SlideShare una empresa de Scribd logo
1 de 31
Rewriting the Genome With gBlocks® Gene Fragments
Harnessing the Power of CRISPR and Synthetic Biology
Adam Clore, PhD
Manager, Synthetic Biology
Design and Support
The design, redesign, and construction of new biological
parts, devices, and systems
Defining Synthetic Biology
Genome Modification Using the Repair of Double Stranded Breaks
• In most eukaryotes non homologous end joining (NHEJ) is the most efficient
DBS repair pathway
• Error prone, often creates INDELs
• The presence of homologous template (aka “Donor DNA”) can induce
recombination
• Efficiency and length of homology arms varies from one cell line to another
Recent Evolution of Genome Editing
• Zinc Finger Nucleases (ZNFs)
• TALENs
• Meganucleases
• CRISPR/Cas9
Curtin (2012), Plant Gen., 5, p42-50
Overview of Three Generations of Programmable Nucleases
Cost Reliability Accuracy
Zinc Finger
Nucleases
$$$$ Low Poor
TALENs $$$$ High Good
CRISPR $ High Good
CRISPR—Easy Genome Modification
• Clustered Regularly Interspaced Short Palindromic Repeat
• A prokaryotic defense mechanism that screens for and cleaves specific DNA
sequences
• Can be used to create targeted changes to the genomes of bacteria, archaea, and
eukaryotes
The 3 Stages of CRISPR Resistance
● Stage 1: CRISPR Adaptation
– Foreign DNA is incorporated in the CRISPR array.
● Stage 2: CRISPR Expression
– CRISPR RNAs (crRNAs) are transcribed from the
CRISPR locus.
● Stage 3: CRISPR Interference
– Foreign nucleic acid complementary to the crRNA
is neutralized.
CRISPR Applications
New England Biolabs
How Do You CRISPR?
CRISPR System Features
Dual-expression plasmids
Cas9 under constitutive promoter
gRNA under Pol III promoter (U6/H1)
Most common, most published data
Large plasmids (8-10 kb), tricky transfection
Cloning of gRNAs is cumbersome
Two single-expression plasmids Smaller plasmids
Easier cloning of gRNAs
Lower transfection rates
Lentiviral transfection High efficiency
Requires cloning and pseudovirus production
Microinjection Preferred for embryos
Highest efficiency (>95% of cells express Cas9)
Requires specialized equipment and methods
Cell lines expressing Cas9 Eliminates variation in large plasmid transfection
Alternative delivery of CRISPR components
gRNA expression cassette (i.e., gBlocks® Gene Fragments)
gRNAs
Cas9 protein
Alternative PAMs
In search of increased targeting efficiency and
reduced off-target effects
CRISPR Mediated Gene Disruption
• CHO cells
• In zebrafish
• In yeast
• The list goes on…
CRISPRi
CRISPR Based Gene Silencing
Method
• CRISPRi uses a nuclease dead Cas9 Protein to sterically block transcription
elongation or promoter binding
• First demonstrated in E. coli by Qi et al (Weissman Lab, Berkeley) in 2013
http://dx.doi.org/10.1016/j.cell.2013.02.022
Transcription Repression
Benefits of CRISPRi
• Functions in all domains of life
 siRNA is not active in prokaryotes and some fungi
 No permanent change to genome
 Different activity than RNAi
 Anecdotal information suggests that CRISPR may be more robust that RNAi
Screening With CRISPR Libraries
• First large screen done by
Zhang Lab in 2014
• Created genome-scale
CRISPR knockout library
(GeCKO)
• Lentiviral vector with CRISPR
cassette
• Identification of genes
associated with vemurafenib
sensitivity (B-Raf inhibitor)
 18,080 genes
 64,751 gRNAs
Science (2014), 343
Screening With CRISPR Libraries
• First large screen done by
Zhang Lab in 2014
• Created genome-scale
CRISPR knockout library
(GeCKO)
• Lentiviral vector with CRISPR
cassette
• Identification of genes
associated with vemurafenib
sensitivity (B-Raf inhibitor)
 18,080 genes
 64,751 gRNAs
CRISPR as a Biological Sensor
• Paris-Bettencourt iGEM team
• 1st place in 2013 “overgrad” competition
• Detection of tuberculosis drug resistance genes using a
phage-delivered cassette containing:
• a Cas9/gRNA targeting a drug resistance gene
• a LacZ gene driven by an SOS dependent promoter
• Designed for a quick and inexpensive field diagnostic
CRISPR as a Biological Sensor
Creating Long Accurate Synthetic DNA Without Cloning
 IDT introduced the concept of synthetic gene fragments
 125–2000 bp in length
 Sequence-verified
 Short delivery time and low price
 200 ng provided, dry
 High quality DNA fragments,
 Fast–assembly and cloning required
Top 3 questions:
- Can you make them longer?
- Can you make them variable?
- Can I get a discount?
Using gBlocks® Gene Fragments for CRISPR
www.idtdna.com/gblocks Current Protocols in Molecular Biology (2014), 31.1.1-31.1.17.
Using gBlocks® Gene Fragments for CRISPR
www.idtdna.com/gblocks Current Protocols in Molecular Biology (2014), 31.1.1-31.1.17.
gBlocks® Gene Fragments for CRISPR
Design of Donor DNA
• dsDNA typically requires homology arms >500 bp in mammalian cells
 Caution! HR efficiency and optimal arm length varies greatly between cell lines and must be
experimentally verified
• ssDNA can efficiently recombine with 40–50 base homology arms
TARGET GENE
5’ Arm URA3 3’ Arm
gBlocks® Gene Fragments—2015
 We made them longer—up to 2 kb
 We made them variable
 >50 citations
gBlocks® Gene
Fragments
Usually
Shipped (BD) Pricing
125–500 bp 2–4 $89.00 USD
501–750 bp 2–4 $129.00 USD
751–1000 bp 3–5 $149.00 USD
1001–1250 bp 5–8 $209.00 USD
1251–1500 bp 5–8 $249.00 USD
1501–1750 bp 5–8 $289.00 USD
1751–2000 bp 5–8 $329.00 USD
Surveyor® Detection of CRISPR Modifications
(B) sgRNA + CAS9 bind and cut their target sequence creating a
double-strand break (DSB) in a portion of the cells.
(C) Aberrant repair of some DSBs by non-homologous end
joining (NHEJ) results in insertion, deletion or substitution
(depicted by red X).
(A) CRISPR sgRNA delivered to cells.
sgRNA +
Cas9
26
Surveyor® Detection of CRISPR Modifications
(C, D) Genomic DNA is harvested from the transfected
pool of cells and amplified at the locus of interest.
(E, F) PCR product is denatured and re-annealed creating
heteroduplex formation between wild type and modified
amplicons.
Quantitative Assessment of CRISPR Gene Editing via Mismatch Endonuclease
Average % Cleavage of Biological Triplicates via Fragment Analyzer™
Biosecurity
• IDT is one of the five founding members of the International Gene Synthesis
Consortium (IGSC)
• Screens the sequence of every gene and gBlocks® Gene Fragment order
• To ensure safety and regulatory conformance
• IDT reserves the right to refuse any order that does not pass this analysis
• For more information about the IGSC and the Harmonized Screening Protocol, please visit the
website at http://www.genesynthesisconsortium.org/Home.html.
• In October of 2010, the United States government issued final Screening Framework Guidance for
Providers of Synthetic Double-Stranded DNA, describing how commercial providers of synthetic
genes should perform gene sequence and customer screening. IDT and the other IGSC member
companies supported the adoption of the Screening Framework Guidance, and IDT follows that
Guidance in its application of the Harmonized Screening Protocol. For more information, please see
75 FR 62820 (Oct. 13, 2010), or http://federalregister.gov/a/2010-25728.
30
INTEGRATED DNA TECHNOLOGIES
Additional Resources
CRISPR Resources
• www.IDTDNA.com/CRISPR
Information for gBlocks® Gene Fragments
• www.IDTDNA.com/gBlocks
Support for Help With Design, Experimental
Issues, and Ordering
• Genes@IDTDNA.com
Other Educational Resources at www.IDTDNA.com
Under Support & Education Menu:
• DECODED Newsletter
(www.IDTDNA.com/DECODED)
• Video Library
• Frequently Asked Questions
• More…
Integrated DNA Technologies:
• Coralville, IA
• San Diego, CA
• Leuven, Belgium
• Singapore
Rewriting the Genome Using CRISPR and Synthetic Biology

Más contenido relacionado

La actualidad más candente

Lessons learned from high throughput CRISPR targeting in human cell lines
Lessons learned from high throughput CRISPR targeting in human cell linesLessons learned from high throughput CRISPR targeting in human cell lines
Lessons learned from high throughput CRISPR targeting in human cell lines
Chris Thorne
 
Genome Editing Comes Of Age
Genome Editing Comes Of AgeGenome Editing Comes Of Age
Genome Editing Comes Of Age
Chris Thorne
 
CRISPR: Gene editing for everyone
CRISPR: Gene editing for everyoneCRISPR: Gene editing for everyone
CRISPR: Gene editing for everyone
Candy Smellie
 
CRISPR bacterial transformation mixes
CRISPR bacterial transformation mixesCRISPR bacterial transformation mixes
CRISPR bacterial transformation mixes
John Kozlosky
 
CRISPR-Cas9 Review: A potential tool for genome editing
CRISPR-Cas9 Review: A potential tool for genome editingCRISPR-Cas9 Review: A potential tool for genome editing
CRISPR-Cas9 Review: A potential tool for genome editing
Davient Bala
 

La actualidad más candente (20)

Lessons learned from high throughput CRISPR targeting in human cell lines
Lessons learned from high throughput CRISPR targeting in human cell linesLessons learned from high throughput CRISPR targeting in human cell lines
Lessons learned from high throughput CRISPR targeting in human cell lines
 
CRISPR Gene Editing Congress, 25-27 February 2015 in Boston, MA
CRISPR Gene Editing Congress, 25-27 February 2015 in Boston, MACRISPR Gene Editing Congress, 25-27 February 2015 in Boston, MA
CRISPR Gene Editing Congress, 25-27 February 2015 in Boston, MA
 
Crispr
CrisprCrispr
Crispr
 
Genome Editing Comes Of Age
Genome Editing Comes Of AgeGenome Editing Comes Of Age
Genome Editing Comes Of Age
 
NCER Position on Crispr-Cas9
NCER Position on Crispr-Cas9NCER Position on Crispr-Cas9
NCER Position on Crispr-Cas9
 
CRISPR: Gene editing for everyone
CRISPR: Gene editing for everyoneCRISPR: Gene editing for everyone
CRISPR: Gene editing for everyone
 
CRISPR-Cas9 mediated genome editing : A comprehensive review with zebrafish a...
CRISPR-Cas9 mediated genome editing : A comprehensive review with zebrafish a...CRISPR-Cas9 mediated genome editing : A comprehensive review with zebrafish a...
CRISPR-Cas9 mediated genome editing : A comprehensive review with zebrafish a...
 
An Introduction to Crispr Genome Editing
An Introduction to Crispr Genome EditingAn Introduction to Crispr Genome Editing
An Introduction to Crispr Genome Editing
 
CRISPR/Cas9 Platform
CRISPR/Cas9 PlatformCRISPR/Cas9 Platform
CRISPR/Cas9 Platform
 
CRISPR-Revolutionary Genome editing tools for Plants.....
CRISPR-Revolutionary Genome editing tools for Plants.....CRISPR-Revolutionary Genome editing tools for Plants.....
CRISPR-Revolutionary Genome editing tools for Plants.....
 
Why we love crispr cas (and you should, too!)
Why we love crispr cas (and you should, too!)Why we love crispr cas (and you should, too!)
Why we love crispr cas (and you should, too!)
 
CRISPR bacterial transformation mixes
CRISPR bacterial transformation mixesCRISPR bacterial transformation mixes
CRISPR bacterial transformation mixes
 
CRISPR - gene-editing for everyone
CRISPR - gene-editing for everyoneCRISPR - gene-editing for everyone
CRISPR - gene-editing for everyone
 
CRISPR: what it is, and why it is having a profound impact on human health
CRISPR: what it is, and why it is having a profound impact on human healthCRISPR: what it is, and why it is having a profound impact on human health
CRISPR: what it is, and why it is having a profound impact on human health
 
Crispr
CrisprCrispr
Crispr
 
Making the cut with CRISPR
Making the cut with CRISPRMaking the cut with CRISPR
Making the cut with CRISPR
 
Crispr and superbugs
Crispr and superbugsCrispr and superbugs
Crispr and superbugs
 
Crispr/Cas9
Crispr/Cas9Crispr/Cas9
Crispr/Cas9
 
the application of CRISPR/Cas9 system in genome editing
the application of CRISPR/Cas9 system in genome editingthe application of CRISPR/Cas9 system in genome editing
the application of CRISPR/Cas9 system in genome editing
 
CRISPR-Cas9 Review: A potential tool for genome editing
CRISPR-Cas9 Review: A potential tool for genome editingCRISPR-Cas9 Review: A potential tool for genome editing
CRISPR-Cas9 Review: A potential tool for genome editing
 

Destacado

Destacado (20)

Ribonucleoprotein delivery of CRISPR-Cas9 reagents for increased gene editing...
Ribonucleoprotein delivery of CRISPR-Cas9 reagents for increased gene editing...Ribonucleoprotein delivery of CRISPR-Cas9 reagents for increased gene editing...
Ribonucleoprotein delivery of CRISPR-Cas9 reagents for increased gene editing...
 
Getting started with CRISPR: a review of gene knockout and homology-directed ...
Getting started with CRISPR: a review of gene knockout and homology-directed ...Getting started with CRISPR: a review of gene knockout and homology-directed ...
Getting started with CRISPR: a review of gene knockout and homology-directed ...
 
Crispr handbook 2015
Crispr handbook 2015Crispr handbook 2015
Crispr handbook 2015
 
Cpf1-based genome editing using ribonucleoprotein complexes
Cpf1-based genome editing using ribonucleoprotein complexesCpf1-based genome editing using ribonucleoprotein complexes
Cpf1-based genome editing using ribonucleoprotein complexes
 
Increase efficiency of genome editing with the Alt-R™ CRISPR-Cas9 System: Des...
Increase efficiency of genome editing with the Alt-R™ CRISPR-Cas9 System: Des...Increase efficiency of genome editing with the Alt-R™ CRISPR-Cas9 System: Des...
Increase efficiency of genome editing with the Alt-R™ CRISPR-Cas9 System: Des...
 
Crispr cas: A new tool of genome editing
Crispr cas: A new tool of genome editing Crispr cas: A new tool of genome editing
Crispr cas: A new tool of genome editing
 
Tips for effective use of BLAST and other NCBI tools
Tips for effective use of BLAST and other NCBI toolsTips for effective use of BLAST and other NCBI tools
Tips for effective use of BLAST and other NCBI tools
 
CRISPR cas, a potential tool for targeted genome modification in crops.
CRISPR cas, a potential tool for targeted genome modification in crops.CRISPR cas, a potential tool for targeted genome modification in crops.
CRISPR cas, a potential tool for targeted genome modification in crops.
 
New RNA tools for optimized CRISPR/Cas9 genome editing
New RNA tools for optimized CRISPR/Cas9 genome editingNew RNA tools for optimized CRISPR/Cas9 genome editing
New RNA tools for optimized CRISPR/Cas9 genome editing
 
Crispr
CrisprCrispr
Crispr
 
"CRISPR" Gene Editing Tool
"CRISPR" Gene Editing Tool"CRISPR" Gene Editing Tool
"CRISPR" Gene Editing Tool
 
High efficiency qPCR with PrimeTime® Gene Expression Master Mix from IDT
High efficiency qPCR with PrimeTime® Gene Expression Master Mix from IDTHigh efficiency qPCR with PrimeTime® Gene Expression Master Mix from IDT
High efficiency qPCR with PrimeTime® Gene Expression Master Mix from IDT
 
Custom, Affordable Gene Panels with Superior Coverage and Uniformity
Custom, Affordable Gene Panels with Superior Coverage and UniformityCustom, Affordable Gene Panels with Superior Coverage and Uniformity
Custom, Affordable Gene Panels with Superior Coverage and Uniformity
 
Alt-R™ CRISPR-Cas9 System: Ribonucleoprotein delivery optimization for improv...
Alt-R™ CRISPR-Cas9 System: Ribonucleoprotein delivery optimization for improv...Alt-R™ CRISPR-Cas9 System: Ribonucleoprotein delivery optimization for improv...
Alt-R™ CRISPR-Cas9 System: Ribonucleoprotein delivery optimization for improv...
 
Target capture of DNA from FFPE samples— recommendations for generating robus...
Target capture of DNA from FFPE samples— recommendations for generating robus...Target capture of DNA from FFPE samples— recommendations for generating robus...
Target capture of DNA from FFPE samples— recommendations for generating robus...
 
Crispr
CrisprCrispr
Crispr
 
Accurate detection of low frequency genetic variants using novel, molecular t...
Accurate detection of low frequency genetic variants using novel, molecular t...Accurate detection of low frequency genetic variants using novel, molecular t...
Accurate detection of low frequency genetic variants using novel, molecular t...
 
CRISPR technology -A revolutionary discovery
CRISPR technology -A revolutionary discovery CRISPR technology -A revolutionary discovery
CRISPR technology -A revolutionary discovery
 
Crispr technology pnk menon
Crispr technology  pnk menonCrispr technology  pnk menon
Crispr technology pnk menon
 
Review of CRISPR/Cas9
Review of CRISPR/Cas9Review of CRISPR/Cas9
Review of CRISPR/Cas9
 

Similar a Rewriting the Genome Using CRISPR and Synthetic Biology

Similar a Rewriting the Genome Using CRISPR and Synthetic Biology (20)

Crispr cas9
Crispr cas9Crispr cas9
Crispr cas9
 
Stable knockout cell line generation
Stable knockout cell line generationStable knockout cell line generation
Stable knockout cell line generation
 
Stable knockout cell line generation
Stable knockout cell line generationStable knockout cell line generation
Stable knockout cell line generation
 
CRISPR-CAS9 - Gene editing tool
CRISPR-CAS9 - Gene editing toolCRISPR-CAS9 - Gene editing tool
CRISPR-CAS9 - Gene editing tool
 
Genome Editing with CRISPR-Cas9
Genome Editing with CRISPR-Cas9Genome Editing with CRISPR-Cas9
Genome Editing with CRISPR-Cas9
 
GENE KNOCKOUT
GENE KNOCKOUTGENE KNOCKOUT
GENE KNOCKOUT
 
Multi Target Gene Editing using CRISPR Technology for Crop Improvement
Multi Target Gene Editing using CRISPR Technology for Crop ImprovementMulti Target Gene Editing using CRISPR Technology for Crop Improvement
Multi Target Gene Editing using CRISPR Technology for Crop Improvement
 
Modern techniques of crop improvement.pptx final
Modern techniques of crop improvement.pptx finalModern techniques of crop improvement.pptx final
Modern techniques of crop improvement.pptx final
 
Gene Editing for everyone
Gene Editing for everyoneGene Editing for everyone
Gene Editing for everyone
 
Genome editing with engineered nucleases
Genome editing with engineered nucleasesGenome editing with engineered nucleases
Genome editing with engineered nucleases
 
How CRISPR–Cas9 Screening will revolutionise your drug development programs
How CRISPR–Cas9 Screening will revolutionise your drug development programsHow CRISPR–Cas9 Screening will revolutionise your drug development programs
How CRISPR–Cas9 Screening will revolutionise your drug development programs
 
Seftah DNA fingerprint 2007NEW.ppt
Seftah DNA fingerprint 2007NEW.pptSeftah DNA fingerprint 2007NEW.ppt
Seftah DNA fingerprint 2007NEW.ppt
 
491-1487159777.pdf
491-1487159777.pdf491-1487159777.pdf
491-1487159777.pdf
 
491-1487159777.pdf
491-1487159777.pdf491-1487159777.pdf
491-1487159777.pdf
 
CRISPR
CRISPRCRISPR
CRISPR
 
605T_Phamaceutical biotecnology_unit 2.pptx
605T_Phamaceutical biotecnology_unit 2.pptx605T_Phamaceutical biotecnology_unit 2.pptx
605T_Phamaceutical biotecnology_unit 2.pptx
 
What should Bioinformatics do for EvoDevo?
What should Bioinformatics do for EvoDevo?What should Bioinformatics do for EvoDevo?
What should Bioinformatics do for EvoDevo?
 
Mdadar 3
Mdadar   3Mdadar   3
Mdadar 3
 
poster
posterposter
poster
 
Crispr technique
Crispr techniqueCrispr technique
Crispr technique
 

Más de Integrated DNA Technologies

The quest for high confidence mutations in plasma: searching for a needle in ...
The quest for high confidence mutations in plasma: searching for a needle in ...The quest for high confidence mutations in plasma: searching for a needle in ...
The quest for high confidence mutations in plasma: searching for a needle in ...
Integrated DNA Technologies
 
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
Integrated DNA Technologies
 

Más de Integrated DNA Technologies (19)

Overcoming the challenges of designing efficient and specific CRISPR gRNAs
Overcoming the challenges of designing efficient and specific CRISPR gRNAsOvercoming the challenges of designing efficient and specific CRISPR gRNAs
Overcoming the challenges of designing efficient and specific CRISPR gRNAs
 
Best practices for data analysis when using UMI adapters to improve variant d...
Best practices for data analysis when using UMI adapters to improve variant d...Best practices for data analysis when using UMI adapters to improve variant d...
Best practices for data analysis when using UMI adapters to improve variant d...
 
Increasing genome editing efficiency with optimized CRISPR-Cas enzymes
Increasing genome editing efficiency with optimized CRISPR-Cas enzymesIncreasing genome editing efficiency with optimized CRISPR-Cas enzymes
Increasing genome editing efficiency with optimized CRISPR-Cas enzymes
 
The quest for high confidence mutations in plasma: searching for a needle in ...
The quest for high confidence mutations in plasma: searching for a needle in ...The quest for high confidence mutations in plasma: searching for a needle in ...
The quest for high confidence mutations in plasma: searching for a needle in ...
 
SNP genotyping on qPCR platforms: Troubleshooting for amplification and clust...
SNP genotyping on qPCR platforms: Troubleshooting for amplification and clust...SNP genotyping on qPCR platforms: Troubleshooting for amplification and clust...
SNP genotyping on qPCR platforms: Troubleshooting for amplification and clust...
 
Optimized methods to use Cas9 nickases in genome editing
Optimized methods to use Cas9 nickases in genome editingOptimized methods to use Cas9 nickases in genome editing
Optimized methods to use Cas9 nickases in genome editing
 
Dual index adapters with UMIs resolve index hopping and increase sensitivity ...
Dual index adapters with UMIs resolve index hopping and increase sensitivity ...Dual index adapters with UMIs resolve index hopping and increase sensitivity ...
Dual index adapters with UMIs resolve index hopping and increase sensitivity ...
 
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
Characterizing Alzheimer’s Disease candidate genes and transcripts with targe...
 
Reducing off-target events in CRISPR genome editing applications with a novel...
Reducing off-target events in CRISPR genome editing applications with a novel...Reducing off-target events in CRISPR genome editing applications with a novel...
Reducing off-target events in CRISPR genome editing applications with a novel...
 
rhAmp™ SNP Genotyping: A novel approach for improving PCR-based SNP genotyping
rhAmp™ SNP Genotyping: A novel approach for improving PCR-based SNP genotypingrhAmp™ SNP Genotyping: A novel approach for improving PCR-based SNP genotyping
rhAmp™ SNP Genotyping: A novel approach for improving PCR-based SNP genotyping
 
Unique, dual-matched adapters mitigate index hopping between NGS samples
Unique, dual-matched adapters mitigate index hopping between NGS samplesUnique, dual-matched adapters mitigate index hopping between NGS samples
Unique, dual-matched adapters mitigate index hopping between NGS samples
 
Analyzing the exome—focusing your NGS analysis with high performance target c...
Analyzing the exome—focusing your NGS analysis with high performance target c...Analyzing the exome—focusing your NGS analysis with high performance target c...
Analyzing the exome—focusing your NGS analysis with high performance target c...
 
Gene synthesis technology and applications update—unleash your lab’s potentia...
Gene synthesis technology and applications update—unleash your lab’s potentia...Gene synthesis technology and applications update—unleash your lab’s potentia...
Gene synthesis technology and applications update—unleash your lab’s potentia...
 
PrimeTime® qPCR products for gene expression
PrimeTime® qPCR products for gene expressionPrimeTime® qPCR products for gene expression
PrimeTime® qPCR products for gene expression
 
xGen® Lockdown® products for next generation sequencing
xGen® Lockdown® products for next generation sequencingxGen® Lockdown® products for next generation sequencing
xGen® Lockdown® products for next generation sequencing
 
High throughput qPCR: tips for analysis across multiple plates
High throughput qPCR: tips for analysis across multiple platesHigh throughput qPCR: tips for analysis across multiple plates
High throughput qPCR: tips for analysis across multiple plates
 
Knockdown of lncRNAs: exploring RNAi and antisense oligo methods
Knockdown of lncRNAs: exploring RNAi and antisense oligo methodsKnockdown of lncRNAs: exploring RNAi and antisense oligo methods
Knockdown of lncRNAs: exploring RNAi and antisense oligo methods
 
iGEM Progress Using High Quality Gene Fragments
iGEM Progress Using High Quality Gene FragmentsiGEM Progress Using High Quality Gene Fragments
iGEM Progress Using High Quality Gene Fragments
 
Understanding Melt Curves for Improved SYBR® Green Assay Analysis and Trouble...
Understanding Melt Curves for Improved SYBR® Green Assay Analysis and Trouble...Understanding Melt Curves for Improved SYBR® Green Assay Analysis and Trouble...
Understanding Melt Curves for Improved SYBR® Green Assay Analysis and Trouble...
 

Último

Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune WaterworldsBiogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
Sérgio Sacani
 
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdfPests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
PirithiRaju
 
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptxSCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
RizalinePalanog2
 
Conjugation, transduction and transformation
Conjugation, transduction and transformationConjugation, transduction and transformation
Conjugation, transduction and transformation
Areesha Ahmad
 
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
dkNET
 
Pests of cotton_Sucking_Pests_Dr.UPR.pdf
Pests of cotton_Sucking_Pests_Dr.UPR.pdfPests of cotton_Sucking_Pests_Dr.UPR.pdf
Pests of cotton_Sucking_Pests_Dr.UPR.pdf
PirithiRaju
 
Pests of mustard_Identification_Management_Dr.UPR.pdf
Pests of mustard_Identification_Management_Dr.UPR.pdfPests of mustard_Identification_Management_Dr.UPR.pdf
Pests of mustard_Identification_Management_Dr.UPR.pdf
PirithiRaju
 
Module for Grade 9 for Asynchronous/Distance learning
Module for Grade 9 for Asynchronous/Distance learningModule for Grade 9 for Asynchronous/Distance learning
Module for Grade 9 for Asynchronous/Distance learning
levieagacer
 

Último (20)

IDENTIFICATION OF THE LIVING- forensic medicine
IDENTIFICATION OF THE LIVING- forensic medicineIDENTIFICATION OF THE LIVING- forensic medicine
IDENTIFICATION OF THE LIVING- forensic medicine
 
Factory Acceptance Test( FAT).pptx .
Factory Acceptance Test( FAT).pptx       .Factory Acceptance Test( FAT).pptx       .
Factory Acceptance Test( FAT).pptx .
 
Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune WaterworldsBiogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
Biogenic Sulfur Gases as Biosignatures on Temperate Sub-Neptune Waterworlds
 
Zoology 5th semester notes( Sumit_yadav).pdf
Zoology 5th semester notes( Sumit_yadav).pdfZoology 5th semester notes( Sumit_yadav).pdf
Zoology 5th semester notes( Sumit_yadav).pdf
 
STS-UNIT 4 CLIMATE CHANGE POWERPOINT PRESENTATION
STS-UNIT 4 CLIMATE CHANGE POWERPOINT PRESENTATIONSTS-UNIT 4 CLIMATE CHANGE POWERPOINT PRESENTATION
STS-UNIT 4 CLIMATE CHANGE POWERPOINT PRESENTATION
 
COST ESTIMATION FOR A RESEARCH PROJECT.pptx
COST ESTIMATION FOR A RESEARCH PROJECT.pptxCOST ESTIMATION FOR A RESEARCH PROJECT.pptx
COST ESTIMATION FOR A RESEARCH PROJECT.pptx
 
COMPUTING ANTI-DERIVATIVES (Integration by SUBSTITUTION)
COMPUTING ANTI-DERIVATIVES(Integration by SUBSTITUTION)COMPUTING ANTI-DERIVATIVES(Integration by SUBSTITUTION)
COMPUTING ANTI-DERIVATIVES (Integration by SUBSTITUTION)
 
Vip profile Call Girls In Lonavala 9748763073 For Genuine Sex Service At Just...
Vip profile Call Girls In Lonavala 9748763073 For Genuine Sex Service At Just...Vip profile Call Girls In Lonavala 9748763073 For Genuine Sex Service At Just...
Vip profile Call Girls In Lonavala 9748763073 For Genuine Sex Service At Just...
 
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdfPests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
Pests of cotton_Borer_Pests_Binomics_Dr.UPR.pdf
 
GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)
 
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptxSCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
SCIENCE-4-QUARTER4-WEEK-4-PPT-1 (1).pptx
 
GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)
 
Conjugation, transduction and transformation
Conjugation, transduction and transformationConjugation, transduction and transformation
Conjugation, transduction and transformation
 
pumpkin fruit fly, water melon fruit fly, cucumber fruit fly
pumpkin fruit fly, water melon fruit fly, cucumber fruit flypumpkin fruit fly, water melon fruit fly, cucumber fruit fly
pumpkin fruit fly, water melon fruit fly, cucumber fruit fly
 
Kochi ❤CALL GIRL 84099*07087 ❤CALL GIRLS IN Kochi ESCORT SERVICE❤CALL GIRL
Kochi ❤CALL GIRL 84099*07087 ❤CALL GIRLS IN Kochi ESCORT SERVICE❤CALL GIRLKochi ❤CALL GIRL 84099*07087 ❤CALL GIRLS IN Kochi ESCORT SERVICE❤CALL GIRL
Kochi ❤CALL GIRL 84099*07087 ❤CALL GIRLS IN Kochi ESCORT SERVICE❤CALL GIRL
 
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
dkNET Webinar "Texera: A Scalable Cloud Computing Platform for Sharing Data a...
 
Pests of cotton_Sucking_Pests_Dr.UPR.pdf
Pests of cotton_Sucking_Pests_Dr.UPR.pdfPests of cotton_Sucking_Pests_Dr.UPR.pdf
Pests of cotton_Sucking_Pests_Dr.UPR.pdf
 
Pests of mustard_Identification_Management_Dr.UPR.pdf
Pests of mustard_Identification_Management_Dr.UPR.pdfPests of mustard_Identification_Management_Dr.UPR.pdf
Pests of mustard_Identification_Management_Dr.UPR.pdf
 
High Class Escorts in Hyderabad ₹7.5k Pick Up & Drop With Cash Payment 969456...
High Class Escorts in Hyderabad ₹7.5k Pick Up & Drop With Cash Payment 969456...High Class Escorts in Hyderabad ₹7.5k Pick Up & Drop With Cash Payment 969456...
High Class Escorts in Hyderabad ₹7.5k Pick Up & Drop With Cash Payment 969456...
 
Module for Grade 9 for Asynchronous/Distance learning
Module for Grade 9 for Asynchronous/Distance learningModule for Grade 9 for Asynchronous/Distance learning
Module for Grade 9 for Asynchronous/Distance learning
 

Rewriting the Genome Using CRISPR and Synthetic Biology

  • 1. Rewriting the Genome With gBlocks® Gene Fragments Harnessing the Power of CRISPR and Synthetic Biology Adam Clore, PhD Manager, Synthetic Biology Design and Support
  • 2. The design, redesign, and construction of new biological parts, devices, and systems Defining Synthetic Biology
  • 3. Genome Modification Using the Repair of Double Stranded Breaks • In most eukaryotes non homologous end joining (NHEJ) is the most efficient DBS repair pathway • Error prone, often creates INDELs • The presence of homologous template (aka “Donor DNA”) can induce recombination • Efficiency and length of homology arms varies from one cell line to another
  • 4. Recent Evolution of Genome Editing • Zinc Finger Nucleases (ZNFs) • TALENs • Meganucleases • CRISPR/Cas9 Curtin (2012), Plant Gen., 5, p42-50
  • 5. Overview of Three Generations of Programmable Nucleases Cost Reliability Accuracy Zinc Finger Nucleases $$$$ Low Poor TALENs $$$$ High Good CRISPR $ High Good
  • 6. CRISPR—Easy Genome Modification • Clustered Regularly Interspaced Short Palindromic Repeat • A prokaryotic defense mechanism that screens for and cleaves specific DNA sequences • Can be used to create targeted changes to the genomes of bacteria, archaea, and eukaryotes
  • 7. The 3 Stages of CRISPR Resistance ● Stage 1: CRISPR Adaptation – Foreign DNA is incorporated in the CRISPR array. ● Stage 2: CRISPR Expression – CRISPR RNAs (crRNAs) are transcribed from the CRISPR locus. ● Stage 3: CRISPR Interference – Foreign nucleic acid complementary to the crRNA is neutralized.
  • 9. How Do You CRISPR? CRISPR System Features Dual-expression plasmids Cas9 under constitutive promoter gRNA under Pol III promoter (U6/H1) Most common, most published data Large plasmids (8-10 kb), tricky transfection Cloning of gRNAs is cumbersome Two single-expression plasmids Smaller plasmids Easier cloning of gRNAs Lower transfection rates Lentiviral transfection High efficiency Requires cloning and pseudovirus production Microinjection Preferred for embryos Highest efficiency (>95% of cells express Cas9) Requires specialized equipment and methods Cell lines expressing Cas9 Eliminates variation in large plasmid transfection Alternative delivery of CRISPR components gRNA expression cassette (i.e., gBlocks® Gene Fragments) gRNAs Cas9 protein Alternative PAMs In search of increased targeting efficiency and reduced off-target effects
  • 10. CRISPR Mediated Gene Disruption • CHO cells • In zebrafish • In yeast • The list goes on…
  • 12. Method • CRISPRi uses a nuclease dead Cas9 Protein to sterically block transcription elongation or promoter binding • First demonstrated in E. coli by Qi et al (Weissman Lab, Berkeley) in 2013 http://dx.doi.org/10.1016/j.cell.2013.02.022
  • 14. Benefits of CRISPRi • Functions in all domains of life  siRNA is not active in prokaryotes and some fungi  No permanent change to genome  Different activity than RNAi  Anecdotal information suggests that CRISPR may be more robust that RNAi
  • 15. Screening With CRISPR Libraries • First large screen done by Zhang Lab in 2014 • Created genome-scale CRISPR knockout library (GeCKO) • Lentiviral vector with CRISPR cassette • Identification of genes associated with vemurafenib sensitivity (B-Raf inhibitor)  18,080 genes  64,751 gRNAs Science (2014), 343
  • 16. Screening With CRISPR Libraries • First large screen done by Zhang Lab in 2014 • Created genome-scale CRISPR knockout library (GeCKO) • Lentiviral vector with CRISPR cassette • Identification of genes associated with vemurafenib sensitivity (B-Raf inhibitor)  18,080 genes  64,751 gRNAs
  • 17. CRISPR as a Biological Sensor • Paris-Bettencourt iGEM team • 1st place in 2013 “overgrad” competition • Detection of tuberculosis drug resistance genes using a phage-delivered cassette containing: • a Cas9/gRNA targeting a drug resistance gene • a LacZ gene driven by an SOS dependent promoter
  • 18. • Designed for a quick and inexpensive field diagnostic CRISPR as a Biological Sensor
  • 19. Creating Long Accurate Synthetic DNA Without Cloning  IDT introduced the concept of synthetic gene fragments  125–2000 bp in length  Sequence-verified  Short delivery time and low price  200 ng provided, dry  High quality DNA fragments,  Fast–assembly and cloning required Top 3 questions: - Can you make them longer? - Can you make them variable? - Can I get a discount?
  • 20. Using gBlocks® Gene Fragments for CRISPR www.idtdna.com/gblocks Current Protocols in Molecular Biology (2014), 31.1.1-31.1.17.
  • 21. Using gBlocks® Gene Fragments for CRISPR www.idtdna.com/gblocks Current Protocols in Molecular Biology (2014), 31.1.1-31.1.17.
  • 23. Design of Donor DNA • dsDNA typically requires homology arms >500 bp in mammalian cells  Caution! HR efficiency and optimal arm length varies greatly between cell lines and must be experimentally verified • ssDNA can efficiently recombine with 40–50 base homology arms TARGET GENE 5’ Arm URA3 3’ Arm
  • 24. gBlocks® Gene Fragments—2015  We made them longer—up to 2 kb  We made them variable  >50 citations gBlocks® Gene Fragments Usually Shipped (BD) Pricing 125–500 bp 2–4 $89.00 USD 501–750 bp 2–4 $129.00 USD 751–1000 bp 3–5 $149.00 USD 1001–1250 bp 5–8 $209.00 USD 1251–1500 bp 5–8 $249.00 USD 1501–1750 bp 5–8 $289.00 USD 1751–2000 bp 5–8 $329.00 USD
  • 25. Surveyor® Detection of CRISPR Modifications (B) sgRNA + CAS9 bind and cut their target sequence creating a double-strand break (DSB) in a portion of the cells. (C) Aberrant repair of some DSBs by non-homologous end joining (NHEJ) results in insertion, deletion or substitution (depicted by red X). (A) CRISPR sgRNA delivered to cells. sgRNA + Cas9
  • 26. 26 Surveyor® Detection of CRISPR Modifications (C, D) Genomic DNA is harvested from the transfected pool of cells and amplified at the locus of interest. (E, F) PCR product is denatured and re-annealed creating heteroduplex formation between wild type and modified amplicons.
  • 27. Quantitative Assessment of CRISPR Gene Editing via Mismatch Endonuclease Average % Cleavage of Biological Triplicates via Fragment Analyzer™
  • 28.
  • 29. Biosecurity • IDT is one of the five founding members of the International Gene Synthesis Consortium (IGSC) • Screens the sequence of every gene and gBlocks® Gene Fragment order • To ensure safety and regulatory conformance • IDT reserves the right to refuse any order that does not pass this analysis • For more information about the IGSC and the Harmonized Screening Protocol, please visit the website at http://www.genesynthesisconsortium.org/Home.html. • In October of 2010, the United States government issued final Screening Framework Guidance for Providers of Synthetic Double-Stranded DNA, describing how commercial providers of synthetic genes should perform gene sequence and customer screening. IDT and the other IGSC member companies supported the adoption of the Screening Framework Guidance, and IDT follows that Guidance in its application of the Harmonized Screening Protocol. For more information, please see 75 FR 62820 (Oct. 13, 2010), or http://federalregister.gov/a/2010-25728.
  • 30. 30 INTEGRATED DNA TECHNOLOGIES Additional Resources CRISPR Resources • www.IDTDNA.com/CRISPR Information for gBlocks® Gene Fragments • www.IDTDNA.com/gBlocks Support for Help With Design, Experimental Issues, and Ordering • Genes@IDTDNA.com Other Educational Resources at www.IDTDNA.com Under Support & Education Menu: • DECODED Newsletter (www.IDTDNA.com/DECODED) • Video Library • Frequently Asked Questions • More… Integrated DNA Technologies: • Coralville, IA • San Diego, CA • Leuven, Belgium • Singapore