SlideShare una empresa de Scribd logo
1 de 35
Citric Acid cycle
Present
by
Chitranjan
Citric Acid cycle or Tricarboxylic Acid cycle or Krebs Cycle
Overview and brief history
•Pyruvate Dehydrogenase Complex (PDC) and its control
•Reactions of TCA cycle or CAC
•Amphibolic nature of TCA cycle
•Regulation of TCA cycle
•Reactions of Glycolysis are localized in Cytosol, and do not require any
oxygen.
whereas pyruvate dehydrogenase and TCA cycle reactions take place in
mitochondria where oxygen is utilized to generate ATP by oxydative
phosphorylation.
Consumption of oxygen (respiration) depends on the rate of PDC and
TCA reactions.
In Mitochondria
In Cytosol
Historical perspective:
1930: Elucidation of Glycolysis
Study of oxidation of glucose in muscle,
addition of Malonate inhibited the respiration
(i.e. O2 uptake).
Malonate is an inhibitor of Succinate oxidation
to Fumerate
1935: Szent-Gyorgyi: demonstrated that little
amounts (catalytic amounts) of succinate,
fumerate, malate or oxaloacetate acelerated the
rate of respiration.
He also showed the sequence of inter-conversion:
Succinate --- Fumerate --- malate ---oxaloacetate.
1936: Martius & Knoop: Found the following sequence of reaction:
Citrate to cis-aconitase to Isocitrate to a Ketogluterate to succinate
1937: Krebs: Enzymatic conversion of Pyruvate + Oxaloacetate to citrate and CO2
Discovered the cycle of these reactions and found it to be a major pathway for
pyruvate oxidation in muscle.
Reaction of pyruvate dehydrogenase complex (PDC)
Reactions of TCA cycle: 8 reactions:
Citrate synthase
Aconitase
Iso-citrate dehydrogenase
α ketoglutarate dehydrogenase
Succinyl-Coenzyme A synthetase
Succinate dehydrogenase
Fumerase
Malate dehydrogenase
Pyruvate dehydrogenase Complex (PDC)
It is a multi-enzyme complex containing three enzymes associated
together non-covalently:
E-1 : Pyruvate dehydrogenase, uses Thiamine pyrophosphate as
cofactor bound to E1
E-2 : Dihydrolipoyl transacetylase, Lipoic acid bound, CoA as
substrate
E-3 : Dihydrolipoyl Dehydrogenase FAD bound, NAD+
as substrate
Advantages of multienzyme complex:
1. Higher rate of reaction: Because product of one enzyme acts as a
substrate of other, and is available for the active site of next
enzyme without much diffusion.
2. Minimum side reaction.
3. Coordinated control.
Thiamin (Vitamine B1) deficiency causes Beriberi:
Thiamine pyrophosphate (TPP) is an important cofactor of pyruvate
dehydrogenase complex, or PDC a critical enzyme in glucose metabolism.
Thiamine is neither synthesized nor stored in good amounts by most vertebrates.
It is required in the diets of most vertebrates. Thiamine deficiency ultimately
causes a fatal disease called Beriberi characterized by neurological disturbances,
paralysis, atrophy of limbs and cardiac failure. Note that brain exclusively uses
aerobic glucose catabolism for energy and PDC is very critical for aerobic
catabolism. Therefore thiamine deficiency causes severe neurological symptoms.
Arsenic Poisoning: Arsenic compounds such as arsenite (AsO3---) organic
arsenicals are poisonous because they covalently bind to sulfhydryl compounds
(SH- groups of proteins and cofactors). Dihydrolipoamide is a critical cofactor of
PDC, and it has two-SH groups, which are important for the PDC reaction. These
–SH groups are covalently inactivated by arsenic compounds as shown below;
OH HS S
-
O As + -
O As + 2H2O
OH HS S
R R
Arsenic compounds in low doses are very toxic to microorganisms,
therefore these compounds were used for the treatment of syphilis and
other diseases in earlier days. Arsenicals were first antibiotics, but with a
terrible side effects as they are eventually very toxic to humans.
Unfortunately and ignorantly, a common nineteenth century tonic, the
Fowler’s solution contained 10 mg/ml arsenite. This tonic must have
been responsible for many deaths, including the death of the famous
evolution scientist Charlse Darwin.
Arsenic Compound poisoning: Inactivation of E-2 of PDC, and other proteins.
Organic Arsenical were used
as antibiotics for the treatment
of syphilis and
trypanosomiasis.
Micro-organisms are more
sensitive to organic arsenicals
than humans.
But these compounds had
severe side effects and As-
poisoning.
Fowler’s solution, the famous
19th
century tonic contained
10mg/ml As. Charles Darwin
died of As poisoning by taking
this tonic.
Napoleon Bonaparte’s death
was also suspected to be due
to As poisoning.
Reactions of Citric Acid Cycle
1. Citrate synthase: Formation of Citroyl CoA intermediate.
2. Binding of Oxaloacetate to the enzyme results in conformational change
which facilitates the binding of the next substrate, the acetyl Coenzyme A.
There is a further conformational change which leads to formation of
products. This mechanism of reaction is referred as induced fit model.
2. Aconitase: This enzyme catalyses the isomerization reaction by
removing and then adding back the water ( H and OH ) to cis-aconitate
in at different positions. Isocitrate is consumed rapidly by the next
step thus deriving the reaction in forward direction.
3. Isocitrate dehydrogenase: There are two isoforms of this enzyme, one
uses NAD+
and other uses NADP+
as electron acceptor.
4. α-Ketoglutarate dehydrogenase: This is a complex of different
enzymatic activities similar to the pyruvate dyhdogenase complex. It
has the same mechanism of reaction with E1, E2 and E3 enzyme units.
NAD+ is an electron acceptor.
5. Succinyl CoA synthatse: Sccinyl CoA, like Acetyl CoA has a
thioester bond with very negative free energy of hydrolysis. In this
reaction, the hydrolysis of the thioester bond leads to the formation
of phosphoester bond with inorganic phosphate. This phosphate is
transferred to Histidine residue of the enzyme and this high energy,
unstable phosphate is finally transferred to GDP resulting in the
generation of GTP.
6. Succinate Dehydrogenase: Oxidation of succinate to fumarate. This
is the only citric acid cycle enzyme that is tightly bound to the inner
mitochondrial membrane. It is an FAD dependent enzyme.
Malonate has similar structure to Succinate, and it competitively inhibits
SDH.
7. Fumarase: Hydration of Fumarate to malate: It is a highly
stereospecific enzyme. Cis-Maleate (the cis form of fumarate is not
recognized by this enzyme.
8. L-Malate dehydrogenase: Oxidation of malate to oxaloacetate: It is an
NAD+
dependent enzyme. Reaction is pulled in forward direction by the
next reaction (citrate synthase reaction) as the oxaloacetate is depleted
at a very fast rate.
Conservation of energy of oxidation in the CAC: The two carbon acetyl
group generated in PDC reaction enter the CAC, and two molecules of CO2 are
released in on cycle. Thus there is complete oxidation of two carbons during
one cycle. Although the two carbons which enter the cycle become the part of
oxaloacetate, and are released as CO2 only in the third round of the cycle. The
energy released due to this oxidation is conserved in the reduction of 3 NAD+,
1 FAD molecule and synthesis of one GTP molecule which is converted to ATP.
Efficiency of Biochemical engine in Living Systems:
Oxidation of one glucose yields 2840 kJ/mole energy
Energy obtained by biological engine: 32ATP X 30.5 kJ/Mol = 976
kJ/mol
Thus 34% efficiency is obtained if calculations are done using
standard conditions. But if concentrations in the cellular condition are
taken in account, the efficiency is close to 65%.
Anaerobic bacteria us incomplete citric acid cycle for production of
biosynthetic precursors. They do not contain a-ketoglutarate
dehydrogenase.
The amphibolic nature of Citric acid cycle: This pathway is utilized for the
both catabolic reactions to generate energy as well as for anabolic reactions to
generate metabolic intermediates for biosynthesis.
If the CAC intermediate are used for synthetic reactions, they are replenished by
anaplerotic reactions in the cells (indicated by red colours).
Fig. 16.16 Glyoxalate cycle
Regulation of CAC:
Rate controlling enzymes:
Citrate synthatase
Isocitrate dehydrogenase
α-keoglutaratedehydrogenase
Regulation of activity by:
Substrate availability
Product inhibition
Allosteric inhibition or activation by
other intermediates

Más contenido relacionado

La actualidad más candente

Metabolism of amino acids (general metabolism)
Metabolism of amino acids (general metabolism)Metabolism of amino acids (general metabolism)
Metabolism of amino acids (general metabolism)Ashok Katta
 
Metabolism of odd chain fatty acids
Metabolism of odd chain fatty acids Metabolism of odd chain fatty acids
Metabolism of odd chain fatty acids Hridya Prasad
 
Beta Oxidation of Fatty Acids
Beta  Oxidation of Fatty Acids Beta  Oxidation of Fatty Acids
Beta Oxidation of Fatty Acids Sana Parveen
 
Pyrimidine Synthesis and Degradation
Pyrimidine Synthesis and DegradationPyrimidine Synthesis and Degradation
Pyrimidine Synthesis and DegradationAshok Katta
 
14 electron transport chain
14 electron transport chain14 electron transport chain
14 electron transport chainHazel Joy Chong
 
Triacylglycerol and compound lipid metabolism
Triacylglycerol and compound lipid metabolismTriacylglycerol and compound lipid metabolism
Triacylglycerol and compound lipid metabolismDipesh Tamrakar
 
Fate of pyruvate - A quick review
Fate of pyruvate - A quick reviewFate of pyruvate - A quick review
Fate of pyruvate - A quick reviewNamrata Chhabra
 
Malate aspartate shuttle
Malate aspartate shuttleMalate aspartate shuttle
Malate aspartate shuttleAayushi Rambia
 
Oxidation of fatty acids
Oxidation of fatty acidsOxidation of fatty acids
Oxidation of fatty acidsAshok Katta
 
TCA cycle- steps, regulation and significance
TCA cycle- steps, regulation and significanceTCA cycle- steps, regulation and significance
TCA cycle- steps, regulation and significanceNamrata Chhabra
 
De novo and salvage pathway of nucleotides synthesis.pptx
De novo and salvage pathway of nucleotides synthesis.pptxDe novo and salvage pathway of nucleotides synthesis.pptx
De novo and salvage pathway of nucleotides synthesis.pptx✨M.A kawish Ⓜ️
 
Catabolism of proteins and amino acids
Catabolism of proteins and amino acidsCatabolism of proteins and amino acids
Catabolism of proteins and amino acidsUnaiza Chaudhary
 

La actualidad más candente (20)

Metabolism of amino acids (general metabolism)
Metabolism of amino acids (general metabolism)Metabolism of amino acids (general metabolism)
Metabolism of amino acids (general metabolism)
 
Metabolism of odd chain fatty acids
Metabolism of odd chain fatty acids Metabolism of odd chain fatty acids
Metabolism of odd chain fatty acids
 
Nucleotide metabolism
Nucleotide metabolismNucleotide metabolism
Nucleotide metabolism
 
Fatty acid synthesis 2018
Fatty acid synthesis 2018Fatty acid synthesis 2018
Fatty acid synthesis 2018
 
Beta Oxidation of Fatty Acids
Beta  Oxidation of Fatty Acids Beta  Oxidation of Fatty Acids
Beta Oxidation of Fatty Acids
 
TCA CYCLE
TCA CYCLETCA CYCLE
TCA CYCLE
 
Krebs cycle
Krebs cycleKrebs cycle
Krebs cycle
 
Pyrimidine Synthesis and Degradation
Pyrimidine Synthesis and DegradationPyrimidine Synthesis and Degradation
Pyrimidine Synthesis and Degradation
 
14 electron transport chain
14 electron transport chain14 electron transport chain
14 electron transport chain
 
The TCA Cycle
The TCA CycleThe TCA Cycle
The TCA Cycle
 
Triacylglycerol and compound lipid metabolism
Triacylglycerol and compound lipid metabolismTriacylglycerol and compound lipid metabolism
Triacylglycerol and compound lipid metabolism
 
Fate of pyruvate - A quick review
Fate of pyruvate - A quick reviewFate of pyruvate - A quick review
Fate of pyruvate - A quick review
 
Malate aspartate shuttle
Malate aspartate shuttleMalate aspartate shuttle
Malate aspartate shuttle
 
Oxidation of fatty acids
Oxidation of fatty acidsOxidation of fatty acids
Oxidation of fatty acids
 
TCA cycle- steps, regulation and significance
TCA cycle- steps, regulation and significanceTCA cycle- steps, regulation and significance
TCA cycle- steps, regulation and significance
 
Glycolysis
GlycolysisGlycolysis
Glycolysis
 
De novo and salvage pathway of nucleotides synthesis.pptx
De novo and salvage pathway of nucleotides synthesis.pptxDe novo and salvage pathway of nucleotides synthesis.pptx
De novo and salvage pathway of nucleotides synthesis.pptx
 
Hexose monophosphate pathway (HMP)
Hexose monophosphate pathway (HMP)Hexose monophosphate pathway (HMP)
Hexose monophosphate pathway (HMP)
 
Catabolism of proteins and amino acids
Catabolism of proteins and amino acidsCatabolism of proteins and amino acids
Catabolism of proteins and amino acids
 
Biosynthesis of fatty acid
Biosynthesis of fatty acidBiosynthesis of fatty acid
Biosynthesis of fatty acid
 

Similar a Citric acid cycle

Citric acid cycle
Citric acid cycleCitric acid cycle
Citric acid cycleapeksha40
 
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...Jay Khaniya
 
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATP
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATPCellular Energy Transfer (Glycolysis and Krebs Cycle) and ATP
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATPmuhammad aleem ijaz
 
Lec05 tc acycle
Lec05 tc acycleLec05 tc acycle
Lec05 tc acycledream10f
 
Respiration biochemistry
Respiration   biochemistryRespiration   biochemistry
Respiration biochemistrysvenwardle
 
citric acid cycle -overview and process to know about
citric acid cycle -overview and process to know aboutcitric acid cycle -overview and process to know about
citric acid cycle -overview and process to know aboutvarinder kumar
 
Microbial metabolism
Microbial metabolismMicrobial metabolism
Microbial metabolismNeha Kaushal
 
BiologyExchange.co.uk Shared Resource
BiologyExchange.co.uk Shared ResourceBiologyExchange.co.uk Shared Resource
BiologyExchange.co.uk Shared Resourcebiologyexchange
 
TCA cycle/Krebs cycle/Citric acid cycle
TCA cycle/Krebs cycle/Citric acid cycleTCA cycle/Krebs cycle/Citric acid cycle
TCA cycle/Krebs cycle/Citric acid cycleRoshanKumarMahat
 

Similar a Citric acid cycle (20)

Citric acid cycle
Citric acid cycleCitric acid cycle
Citric acid cycle
 
Citric acid cycle
Citric acid cycleCitric acid cycle
Citric acid cycle
 
Citric acid cycle
Citric acid cycleCitric acid cycle
Citric acid cycle
 
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...
9.Tricarboxylic acid cycle, Pentose phosphate pathway and Blood sugar regulat...
 
Carbohydrate 3
Carbohydrate 3Carbohydrate 3
Carbohydrate 3
 
Carbohydrate metabolism
Carbohydrate metabolismCarbohydrate metabolism
Carbohydrate metabolism
 
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATP
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATPCellular Energy Transfer (Glycolysis and Krebs Cycle) and ATP
Cellular Energy Transfer (Glycolysis and Krebs Cycle) and ATP
 
Citric Acid Cycle
Citric Acid Cycle Citric Acid Cycle
Citric Acid Cycle
 
Lec05 tc acycle
Lec05 tc acycleLec05 tc acycle
Lec05 tc acycle
 
Respiration biochemistry
Respiration   biochemistryRespiration   biochemistry
Respiration biochemistry
 
4.2 glycolysis & TCA cycle.ppt
4.2 glycolysis & TCA cycle.ppt4.2 glycolysis & TCA cycle.ppt
4.2 glycolysis & TCA cycle.ppt
 
citric acid cycle -overview and process to know about
citric acid cycle -overview and process to know aboutcitric acid cycle -overview and process to know about
citric acid cycle -overview and process to know about
 
Fate of pyruvate under anaerobic condition
Fate of pyruvate under anaerobic conditionFate of pyruvate under anaerobic condition
Fate of pyruvate under anaerobic condition
 
Microbial metabolism
Microbial metabolismMicrobial metabolism
Microbial metabolism
 
Carbohydrate metabolism
Carbohydrate metabolismCarbohydrate metabolism
Carbohydrate metabolism
 
BiologyExchange.co.uk Shared Resource
BiologyExchange.co.uk Shared ResourceBiologyExchange.co.uk Shared Resource
BiologyExchange.co.uk Shared Resource
 
Respiration
RespirationRespiration
Respiration
 
Tca cycle b.pharm
Tca cycle b.pharmTca cycle b.pharm
Tca cycle b.pharm
 
TCA cycle/Krebs cycle/Citric acid cycle
TCA cycle/Krebs cycle/Citric acid cycleTCA cycle/Krebs cycle/Citric acid cycle
TCA cycle/Krebs cycle/Citric acid cycle
 
1. C3,C4,and CAM Plants
1. C3,C4,and CAM Plants 1. C3,C4,and CAM Plants
1. C3,C4,and CAM Plants
 

Último

SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxiammrhaywood
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingTeacherCyreneCayanan
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingTechSoup
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxheathfieldcps1
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.christianmathematics
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.pptRamjanShidvankar
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfAdmir Softic
 
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhi
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in DelhiRussian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhi
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhikauryashika82
 
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17  How to Extend Models Using Mixin ClassesMixin Classes in Odoo 17  How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17 How to Extend Models Using Mixin ClassesCeline George
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeThiyagu K
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Gardella_PRCampaignConclusion Pitch Letter
Gardella_PRCampaignConclusion Pitch LetterGardella_PRCampaignConclusion Pitch Letter
Gardella_PRCampaignConclusion Pitch LetterMateoGardella
 
Class 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfClass 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfAyushMahapatra5
 
An Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfAn Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfSanaAli374401
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17Celine George
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxVishalSingh1417
 

Último (20)

SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptxSOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
SOCIAL AND HISTORICAL CONTEXT - LFTVD.pptx
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writing
 
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
 
Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy Consulting
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptx
 
This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.This PowerPoint helps students to consider the concept of infinity.
This PowerPoint helps students to consider the concept of infinity.
 
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"Mattingly "AI & Prompt Design: The Basics of Prompt Design"
Mattingly "AI & Prompt Design: The Basics of Prompt Design"
 
Application orientated numerical on hev.ppt
Application orientated numerical on hev.pptApplication orientated numerical on hev.ppt
Application orientated numerical on hev.ppt
 
Key note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdfKey note speaker Neum_Admir Softic_ENG.pdf
Key note speaker Neum_Admir Softic_ENG.pdf
 
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhi
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in DelhiRussian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhi
Russian Escort Service in Delhi 11k Hotel Foreigner Russian Call Girls in Delhi
 
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17  How to Extend Models Using Mixin ClassesMixin Classes in Odoo 17  How to Extend Models Using Mixin Classes
Mixin Classes in Odoo 17 How to Extend Models Using Mixin Classes
 
Measures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and ModeMeasures of Central Tendency: Mean, Median and Mode
Measures of Central Tendency: Mean, Median and Mode
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Gardella_PRCampaignConclusion Pitch Letter
Gardella_PRCampaignConclusion Pitch LetterGardella_PRCampaignConclusion Pitch Letter
Gardella_PRCampaignConclusion Pitch Letter
 
Class 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdfClass 11th Physics NEET formula sheet pdf
Class 11th Physics NEET formula sheet pdf
 
Advance Mobile Application Development class 07
Advance Mobile Application Development class 07Advance Mobile Application Development class 07
Advance Mobile Application Development class 07
 
An Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdfAn Overview of Mutual Funds Bcom Project.pdf
An Overview of Mutual Funds Bcom Project.pdf
 
How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17How to Give a Domain for a Field in Odoo 17
How to Give a Domain for a Field in Odoo 17
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 
Unit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptxUnit-V; Pricing (Pharma Marketing Management).pptx
Unit-V; Pricing (Pharma Marketing Management).pptx
 

Citric acid cycle

  • 2. Citric Acid cycle or Tricarboxylic Acid cycle or Krebs Cycle Overview and brief history •Pyruvate Dehydrogenase Complex (PDC) and its control •Reactions of TCA cycle or CAC •Amphibolic nature of TCA cycle •Regulation of TCA cycle •Reactions of Glycolysis are localized in Cytosol, and do not require any oxygen. whereas pyruvate dehydrogenase and TCA cycle reactions take place in mitochondria where oxygen is utilized to generate ATP by oxydative phosphorylation. Consumption of oxygen (respiration) depends on the rate of PDC and TCA reactions.
  • 4. Historical perspective: 1930: Elucidation of Glycolysis Study of oxidation of glucose in muscle, addition of Malonate inhibited the respiration (i.e. O2 uptake). Malonate is an inhibitor of Succinate oxidation to Fumerate 1935: Szent-Gyorgyi: demonstrated that little amounts (catalytic amounts) of succinate, fumerate, malate or oxaloacetate acelerated the rate of respiration. He also showed the sequence of inter-conversion: Succinate --- Fumerate --- malate ---oxaloacetate. 1936: Martius & Knoop: Found the following sequence of reaction: Citrate to cis-aconitase to Isocitrate to a Ketogluterate to succinate 1937: Krebs: Enzymatic conversion of Pyruvate + Oxaloacetate to citrate and CO2 Discovered the cycle of these reactions and found it to be a major pathway for pyruvate oxidation in muscle.
  • 5.
  • 6. Reaction of pyruvate dehydrogenase complex (PDC) Reactions of TCA cycle: 8 reactions: Citrate synthase Aconitase Iso-citrate dehydrogenase α ketoglutarate dehydrogenase Succinyl-Coenzyme A synthetase Succinate dehydrogenase Fumerase Malate dehydrogenase
  • 7.
  • 8. Pyruvate dehydrogenase Complex (PDC) It is a multi-enzyme complex containing three enzymes associated together non-covalently: E-1 : Pyruvate dehydrogenase, uses Thiamine pyrophosphate as cofactor bound to E1 E-2 : Dihydrolipoyl transacetylase, Lipoic acid bound, CoA as substrate E-3 : Dihydrolipoyl Dehydrogenase FAD bound, NAD+ as substrate Advantages of multienzyme complex: 1. Higher rate of reaction: Because product of one enzyme acts as a substrate of other, and is available for the active site of next enzyme without much diffusion. 2. Minimum side reaction. 3. Coordinated control.
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16. Thiamin (Vitamine B1) deficiency causes Beriberi: Thiamine pyrophosphate (TPP) is an important cofactor of pyruvate dehydrogenase complex, or PDC a critical enzyme in glucose metabolism. Thiamine is neither synthesized nor stored in good amounts by most vertebrates. It is required in the diets of most vertebrates. Thiamine deficiency ultimately causes a fatal disease called Beriberi characterized by neurological disturbances, paralysis, atrophy of limbs and cardiac failure. Note that brain exclusively uses aerobic glucose catabolism for energy and PDC is very critical for aerobic catabolism. Therefore thiamine deficiency causes severe neurological symptoms. Arsenic Poisoning: Arsenic compounds such as arsenite (AsO3---) organic arsenicals are poisonous because they covalently bind to sulfhydryl compounds (SH- groups of proteins and cofactors). Dihydrolipoamide is a critical cofactor of PDC, and it has two-SH groups, which are important for the PDC reaction. These –SH groups are covalently inactivated by arsenic compounds as shown below; OH HS S - O As + - O As + 2H2O OH HS S R R
  • 17. Arsenic compounds in low doses are very toxic to microorganisms, therefore these compounds were used for the treatment of syphilis and other diseases in earlier days. Arsenicals were first antibiotics, but with a terrible side effects as they are eventually very toxic to humans. Unfortunately and ignorantly, a common nineteenth century tonic, the Fowler’s solution contained 10 mg/ml arsenite. This tonic must have been responsible for many deaths, including the death of the famous evolution scientist Charlse Darwin.
  • 18. Arsenic Compound poisoning: Inactivation of E-2 of PDC, and other proteins. Organic Arsenical were used as antibiotics for the treatment of syphilis and trypanosomiasis. Micro-organisms are more sensitive to organic arsenicals than humans. But these compounds had severe side effects and As- poisoning. Fowler’s solution, the famous 19th century tonic contained 10mg/ml As. Charles Darwin died of As poisoning by taking this tonic. Napoleon Bonaparte’s death was also suspected to be due to As poisoning.
  • 19. Reactions of Citric Acid Cycle 1. Citrate synthase: Formation of Citroyl CoA intermediate. 2. Binding of Oxaloacetate to the enzyme results in conformational change which facilitates the binding of the next substrate, the acetyl Coenzyme A. There is a further conformational change which leads to formation of products. This mechanism of reaction is referred as induced fit model.
  • 20. 2. Aconitase: This enzyme catalyses the isomerization reaction by removing and then adding back the water ( H and OH ) to cis-aconitate in at different positions. Isocitrate is consumed rapidly by the next step thus deriving the reaction in forward direction.
  • 21. 3. Isocitrate dehydrogenase: There are two isoforms of this enzyme, one uses NAD+ and other uses NADP+ as electron acceptor.
  • 22. 4. α-Ketoglutarate dehydrogenase: This is a complex of different enzymatic activities similar to the pyruvate dyhdogenase complex. It has the same mechanism of reaction with E1, E2 and E3 enzyme units. NAD+ is an electron acceptor.
  • 23. 5. Succinyl CoA synthatse: Sccinyl CoA, like Acetyl CoA has a thioester bond with very negative free energy of hydrolysis. In this reaction, the hydrolysis of the thioester bond leads to the formation of phosphoester bond with inorganic phosphate. This phosphate is transferred to Histidine residue of the enzyme and this high energy, unstable phosphate is finally transferred to GDP resulting in the generation of GTP.
  • 24.
  • 25. 6. Succinate Dehydrogenase: Oxidation of succinate to fumarate. This is the only citric acid cycle enzyme that is tightly bound to the inner mitochondrial membrane. It is an FAD dependent enzyme. Malonate has similar structure to Succinate, and it competitively inhibits SDH.
  • 26. 7. Fumarase: Hydration of Fumarate to malate: It is a highly stereospecific enzyme. Cis-Maleate (the cis form of fumarate is not recognized by this enzyme.
  • 27. 8. L-Malate dehydrogenase: Oxidation of malate to oxaloacetate: It is an NAD+ dependent enzyme. Reaction is pulled in forward direction by the next reaction (citrate synthase reaction) as the oxaloacetate is depleted at a very fast rate.
  • 28. Conservation of energy of oxidation in the CAC: The two carbon acetyl group generated in PDC reaction enter the CAC, and two molecules of CO2 are released in on cycle. Thus there is complete oxidation of two carbons during one cycle. Although the two carbons which enter the cycle become the part of oxaloacetate, and are released as CO2 only in the third round of the cycle. The energy released due to this oxidation is conserved in the reduction of 3 NAD+, 1 FAD molecule and synthesis of one GTP molecule which is converted to ATP.
  • 29. Efficiency of Biochemical engine in Living Systems: Oxidation of one glucose yields 2840 kJ/mole energy Energy obtained by biological engine: 32ATP X 30.5 kJ/Mol = 976 kJ/mol Thus 34% efficiency is obtained if calculations are done using standard conditions. But if concentrations in the cellular condition are taken in account, the efficiency is close to 65%.
  • 30. Anaerobic bacteria us incomplete citric acid cycle for production of biosynthetic precursors. They do not contain a-ketoglutarate dehydrogenase.
  • 31. The amphibolic nature of Citric acid cycle: This pathway is utilized for the both catabolic reactions to generate energy as well as for anabolic reactions to generate metabolic intermediates for biosynthesis. If the CAC intermediate are used for synthetic reactions, they are replenished by anaplerotic reactions in the cells (indicated by red colours).
  • 33.
  • 34.
  • 35. Regulation of CAC: Rate controlling enzymes: Citrate synthatase Isocitrate dehydrogenase α-keoglutaratedehydrogenase Regulation of activity by: Substrate availability Product inhibition Allosteric inhibition or activation by other intermediates