SlideShare a Scribd company logo
1 of 21
Pyruvate Dehydrogenase
Complex
SUBMITTED BY:- SUBMITTED TO:-
Anikesh Kr. Singh Dr. Prem Chandra
M.Sc. FMT (1stSem)
DEM - BBAU
 Inside the mitochondria, pyruvate is
oxidatively decarboxylated to acetyl CoA
by pyruvate dehydrogenase (PDH).
 It is a multi-enzyme complex with 5co-
enzymes &3apo-enzymes.
Pyruvate Dehydrogenase Complex
 Thiamine pyrophosphate (TPP)
 Co-enzyme A (CoA)
 FAD
 NAD+
 Lipoamide
 Thelipoic acid, also called thioctic acid has two
sulphur atoms &8carbonatoms.
 It can accept or donate hydrogen atoms
Coenzyme Functions
Thiamine Pyro Phosphate (TPP) Decarboxylation and aldehyde group
transfer
Lipoic acid Carrier of hydrogen or acetyl groups.
NADH Electron carrier
FADH2 Electron carrier
Coenzyme A (CoASH) Acetyl group carrier.
Enzyme activity Function Coenzymes
Pyruvate dehydrogenase
(E1)
Decarboxylates pyruvate TPP
Dihydrolipoil
transacetylase (E2)
Catalyze transfer of acetyl
group to CoASH
Lipoic acid, CoASH
Dihydrolipoyl
dehydrogenase (E3)
Reoxidizes
dihydrolipoamide
NAD
+
, FAD
1) Pyruvate Dehydrogenase (Enzyme 1)
2) Dihydro Lipoyl TransAcetylase
(Enzyme 2)
3) Dihydro Lipoyl Dehydrogenase
(Enzyme 3)
Pyruvate Dehydrogenase Subunits
Enzyme Abbreviated Prosthetic Group
Pyruvate
Dehydrogenase
E1
Thiamine
pyrophosphate (TPP)
Dihydrolipoyl
Transacetylase
E2
Lipoamide
Dihydrolipoyl
Dehydrogenase
E3
FAD, NAD+
 It catalyses oxidative decarboxylation.
 It requires TPP.
 Thiamine (B1),a B-complex group vitamin
is essential for utilization of pyruvate.
 The two carbon unit remains attached to
the enzyme, as hydroxyethyl-TPP.
 Hydroxyethyl group isoxidized to formanacetyl
group and then transferred from TPP to lipoamide
to form acetyl lipoamide.
Catalyzes transfer of acetyl group to CoASH
 Thelast step isthe oxidation of lipoamide.
 At the end of the reaction the cofactors,
namely TPP,Lipoamide &FADare
regenerated.
 FADH2transfers the reducing equivalents to
NAD+ to give NADH + H+, which can pass
through the ETCto give 3ATP(6ATPfrom 2moles
of pyruvate formed from glucose) by oxidative
phosphorylation.
Pyruvate Dehydrogenase, catalyzes oxidative
decarboxylation of pyruvate, to form acetyl-CoA.
O O
H3C C C
HSCoA
O
NAD+
+ CO2
Pyruvate Dehydrogenase
pyruvate
O
H3C C S CoA
NADH
acetyl-CoA
Sequence of reactions catalyzed by Pyruvate
Dehydrogenase complex:
1. The keto C of pyruvate reacts with the carbanion of
TPP on E1to yield an addition compound.
The electron-pulling (+) charged N of the thiazole ring
promotes CO2loss. Hydroxyethyl-TPPremains.
2. The hydroxyethyl carbanion on TPP of E1reacts with
the disulfide of lipoamide on E2.What was the keto C
of pyruvate is oxidized to a carboxylic acid, as the
lipoamide disulfide is reduced to a dithiol.
The acetate formed by oxidation of the hydroxyethyl
is linked to one of the thiols of the reduced lipoamide
as a thioester (~).
Sequence of reactions (continued)
3. Acetate is transferred from the thiol of lipoamide
to the thiol of coenzyme A, yielding acetyl CoA.
4. The reduced lipoamide, swings over to the E3
active site.
Dihydrolipoamide is reoxidized to the disulfide, as
2 e+ 2 H+are transferred to a disulfide on E3
(disulfide interchange).
3. The dithiol on E3is reoxidized as 2 e-+ 2 H+are
transferred to FAD.
The resulting FADH2 is reoxidized by electron
transfer to NAD+, to yield NADH + H+.
O
H3C C S CoA
acetyl-coenzyme A
Acetyl CoA, a product of the Pyruvate Dehydrogenase
reaction, is a central compound in metabolism.
The "high energy" thioester linkage makes it an
excellent donor of the acetate moiety.
glucose-6-P
acetyl CoA
Glycolysis
pyruvate
fatty acids
ketone bodies
cholesterol
oxaloacetate citrate
Krebs Cycle
Acetyl CoA functions as:
 input to Krebs Cycle, where the acetate moiety
is further degraded to CO2.
 donor of acetate for synthesis of fatty acids,
ketone bodies, & cholesterol.
Regulation of Pyruvate Dehydrogenase Complex:
 Product inhibition by NADH & acetyl CoA:
 NADH competes with NAD+for binding to E3.
 Acetyl CoA competes with CoA for binding to E2.
Regulation by E1 phosphorylation/dephosphorylation:
 Specific regulatory Kinases & Phosphatases associated
with Pyruvate Dehydrogenase in the mitochondrial
matrix:
 Pyruvate Dehydrogenase Kinases catalyze
phosphorylation of serine residues of E1,
inhibiting the complex.
 Pyruvate Dehydrogenase Phosphatases reverse
this inhibition.
o Pyruvate Dehydrogenase Kinases are
activated by NADH & acetyl-CoA,
providing another way the 2 major
products of Pyruvate Dehydrogenase
reaction inhibit the complex.
o Kinase activation involves interaction
with E2subunits to sense changes in
oxidation state & acetylation of
lipoamide caused by NADH & acetyl-
CoA.
During starvation:
• Pyruvate Dehydrogenase Kinase increases in
amount in most tissues, including skeletal muscle, via
increased gene transcription.
• Under the same conditions, the amount of Pyruvate
Dehydrogenase Phosphatase decreases.
The resulting inhibition of Pyruvate Dehydrogenase
prevents muscle and other tissues from catabolizing
glucose & gluconeogenesis precursors.
• Metabolism shifts toward fat utilization.
• Muscle protein breakdown to supply gluconeogenesis
precursors is minimized.
• Available glucose is spared for use by the brain.
The increased cytosolic Ca++that occurs during
activation of muscle contraction can lead to Ca++uptake
by mitochondria.
The higher Ca++stimulates the phosphatase, &
dephosphorylation activates Pyruvate Dehydrogenase.
Thus mitochondrial metabolism may be stimulated
during exercise.
Pyruvate
Dehydro-
genase
in matrix
mitochondrion Ca++
A Ca++-sensitive isoform of
the phosphatase that
removes Pifrom E1is
expressed in muscle.
Pdc ani

More Related Content

What's hot

BIOSYNTHESIS OF FATTY ACIDS
BIOSYNTHESIS OF FATTY ACIDSBIOSYNTHESIS OF FATTY ACIDS
BIOSYNTHESIS OF FATTY ACIDSYESANNA
 
Bioenergetics biological oxidation
Bioenergetics  biological oxidationBioenergetics  biological oxidation
Bioenergetics biological oxidationMuhammadasif909
 
Chemistry of nucleic acid
Chemistry of nucleic acidChemistry of nucleic acid
Chemistry of nucleic acidShraddhabharath
 
Metabolism of glycogen
Metabolism of glycogenMetabolism of glycogen
Metabolism of glycogenAshok Katta
 
Hexose Monophosphate Shunt
Hexose Monophosphate ShuntHexose Monophosphate Shunt
Hexose Monophosphate ShuntAshok Katta
 
Nucleotide metabolism (purine and pyrimidine synthesis)
Nucleotide metabolism (purine and pyrimidine synthesis)Nucleotide metabolism (purine and pyrimidine synthesis)
Nucleotide metabolism (purine and pyrimidine synthesis)Areeba Ghayas
 
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCA
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCAPyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCA
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCAChetan Ganteppanavar
 
PENTOSE PHOSPHATE PATHWAY.pptx
PENTOSE PHOSPHATE PATHWAY.pptxPENTOSE PHOSPHATE PATHWAY.pptx
PENTOSE PHOSPHATE PATHWAY.pptxSuganyaPaulraj
 
Pentose phosphate pathway
Pentose phosphate pathwayPentose phosphate pathway
Pentose phosphate pathwayKayeen Vadakkan
 
Structural organization of proteins (Chemistry of Proteins (Part - III)
Structural organization of proteins (Chemistry of Proteins (Part - III)Structural organization of proteins (Chemistry of Proteins (Part - III)
Structural organization of proteins (Chemistry of Proteins (Part - III)Ashok Katta
 
Biochem nucleotides(structure and functions) june.18.2010
Biochem   nucleotides(structure and functions) june.18.2010Biochem   nucleotides(structure and functions) june.18.2010
Biochem nucleotides(structure and functions) june.18.2010MBBS IMS MSU
 
Biosynthesis of Purine Ribonucleotide, Gout
Biosynthesis of Purine Ribonucleotide, GoutBiosynthesis of Purine Ribonucleotide, Gout
Biosynthesis of Purine Ribonucleotide, GoutAshok Katta
 
The citric acid cycle
The citric acid cycleThe citric acid cycle
The citric acid cycleSKYFALL
 
Nucleotide Synthesis
Nucleotide SynthesisNucleotide Synthesis
Nucleotide SynthesisSameehaJain
 
SYNTHESIS OF PHOSPHOLIPIDS
SYNTHESIS OF PHOSPHOLIPIDSSYNTHESIS OF PHOSPHOLIPIDS
SYNTHESIS OF PHOSPHOLIPIDSYESANNA
 

What's hot (20)

BIOSYNTHESIS OF FATTY ACIDS
BIOSYNTHESIS OF FATTY ACIDSBIOSYNTHESIS OF FATTY ACIDS
BIOSYNTHESIS OF FATTY ACIDS
 
Bpt 114. purine and pyrimidine metabolism
Bpt 114. purine and pyrimidine metabolismBpt 114. purine and pyrimidine metabolism
Bpt 114. purine and pyrimidine metabolism
 
Bioenergetics biological oxidation
Bioenergetics  biological oxidationBioenergetics  biological oxidation
Bioenergetics biological oxidation
 
Chemistry of nucleic acid
Chemistry of nucleic acidChemistry of nucleic acid
Chemistry of nucleic acid
 
Metabolism of glycogen
Metabolism of glycogenMetabolism of glycogen
Metabolism of glycogen
 
Hexose Monophosphate Shunt
Hexose Monophosphate ShuntHexose Monophosphate Shunt
Hexose Monophosphate Shunt
 
Nucleotide metabolism (purine and pyrimidine synthesis)
Nucleotide metabolism (purine and pyrimidine synthesis)Nucleotide metabolism (purine and pyrimidine synthesis)
Nucleotide metabolism (purine and pyrimidine synthesis)
 
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCA
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCAPyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCA
Pyruvate Dehydrogenase and Tricarboxylic Acid Cycle - PDH and TCA
 
PENTOSE PHOSPHATE PATHWAY.pptx
PENTOSE PHOSPHATE PATHWAY.pptxPENTOSE PHOSPHATE PATHWAY.pptx
PENTOSE PHOSPHATE PATHWAY.pptx
 
Fatty acid synthesis
Fatty acid synthesisFatty acid synthesis
Fatty acid synthesis
 
Pyrimidine metabolism
Pyrimidine metabolismPyrimidine metabolism
Pyrimidine metabolism
 
Pentose phosphate pathway
Pentose phosphate pathwayPentose phosphate pathway
Pentose phosphate pathway
 
HMP shunt
HMP shuntHMP shunt
HMP shunt
 
Structural organization of proteins (Chemistry of Proteins (Part - III)
Structural organization of proteins (Chemistry of Proteins (Part - III)Structural organization of proteins (Chemistry of Proteins (Part - III)
Structural organization of proteins (Chemistry of Proteins (Part - III)
 
Biochem nucleotides(structure and functions) june.18.2010
Biochem   nucleotides(structure and functions) june.18.2010Biochem   nucleotides(structure and functions) june.18.2010
Biochem nucleotides(structure and functions) june.18.2010
 
Urea cycle,
Urea cycle,Urea cycle,
Urea cycle,
 
Biosynthesis of Purine Ribonucleotide, Gout
Biosynthesis of Purine Ribonucleotide, GoutBiosynthesis of Purine Ribonucleotide, Gout
Biosynthesis of Purine Ribonucleotide, Gout
 
The citric acid cycle
The citric acid cycleThe citric acid cycle
The citric acid cycle
 
Nucleotide Synthesis
Nucleotide SynthesisNucleotide Synthesis
Nucleotide Synthesis
 
SYNTHESIS OF PHOSPHOLIPIDS
SYNTHESIS OF PHOSPHOLIPIDSSYNTHESIS OF PHOSPHOLIPIDS
SYNTHESIS OF PHOSPHOLIPIDS
 

Similar to Pdc ani (20)

11 krebs cycle
11 krebs cycle11 krebs cycle
11 krebs cycle
 
lecture_23a.ppt
lecture_23a.pptlecture_23a.ppt
lecture_23a.ppt
 
Krebs cycle/Citric acid cycle
Krebs cycle/Citric acid cycleKrebs cycle/Citric acid cycle
Krebs cycle/Citric acid cycle
 
Tca cycle b.pharm
Tca cycle b.pharmTca cycle b.pharm
Tca cycle b.pharm
 
Citric Acid Cycle
Citric Acid Cycle Citric Acid Cycle
Citric Acid Cycle
 
Dr. Prabhakar Singh SEM-III_Fatty Acid Oxidation
Dr. Prabhakar Singh  SEM-III_Fatty Acid OxidationDr. Prabhakar Singh  SEM-III_Fatty Acid Oxidation
Dr. Prabhakar Singh SEM-III_Fatty Acid Oxidation
 
The Tricarboxylic Acid Cycle
The Tricarboxylic Acid CycleThe Tricarboxylic Acid Cycle
The Tricarboxylic Acid Cycle
 
Basic notes of Metabolism of Carbohydrates-1.docx
Basic notes of Metabolism of Carbohydrates-1.docxBasic notes of Metabolism of Carbohydrates-1.docx
Basic notes of Metabolism of Carbohydrates-1.docx
 
Fate of pyruvate under anaerobic condition
Fate of pyruvate under anaerobic conditionFate of pyruvate under anaerobic condition
Fate of pyruvate under anaerobic condition
 
Carbohydrate 3
Carbohydrate 3Carbohydrate 3
Carbohydrate 3
 
PYRUVATE DEHYDROGENASE COMPLEX (PDH-MULTI-ENZYME COMPLEX)
PYRUVATE DEHYDROGENASE COMPLEX (PDH-MULTI-ENZYME COMPLEX)PYRUVATE DEHYDROGENASE COMPLEX (PDH-MULTI-ENZYME COMPLEX)
PYRUVATE DEHYDROGENASE COMPLEX (PDH-MULTI-ENZYME COMPLEX)
 
TCA cycle citric acid cycle krebs cycle.
TCA cycle citric acid cycle krebs cycle.TCA cycle citric acid cycle krebs cycle.
TCA cycle citric acid cycle krebs cycle.
 
Chapter 9
Chapter 9Chapter 9
Chapter 9
 
Crebs cycle 2013
Crebs cycle 2013Crebs cycle 2013
Crebs cycle 2013
 
Krebs cycle
Krebs cycleKrebs cycle
Krebs cycle
 
TCA & glyoxylate cycles.pptx
TCA & glyoxylate cycles.pptxTCA & glyoxylate cycles.pptx
TCA & glyoxylate cycles.pptx
 
4.2 glycolysis & TCA cycle.ppt
4.2 glycolysis & TCA cycle.ppt4.2 glycolysis & TCA cycle.ppt
4.2 glycolysis & TCA cycle.ppt
 
lipids
lipidslipids
lipids
 
TCA
TCATCA
TCA
 
enzmes
enzmesenzmes
enzmes
 

Recently uploaded

Biopesticide (2).pptx .This slides helps to know the different types of biop...
Biopesticide (2).pptx  .This slides helps to know the different types of biop...Biopesticide (2).pptx  .This slides helps to know the different types of biop...
Biopesticide (2).pptx .This slides helps to know the different types of biop...RohitNehra6
 
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Lokesh Kothari
 
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisRaman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisDiwakar Mishra
 
Analytical Profile of Coleus Forskohlii | Forskolin .pdf
Analytical Profile of Coleus Forskohlii | Forskolin .pdfAnalytical Profile of Coleus Forskohlii | Forskolin .pdf
Analytical Profile of Coleus Forskohlii | Forskolin .pdfSwapnil Therkar
 
Work, Energy and Power for class 10 ICSE Physics
Work, Energy and Power for class 10 ICSE PhysicsWork, Energy and Power for class 10 ICSE Physics
Work, Energy and Power for class 10 ICSE Physicsvishikhakeshava1
 
A relative description on Sonoporation.pdf
A relative description on Sonoporation.pdfA relative description on Sonoporation.pdf
A relative description on Sonoporation.pdfnehabiju2046
 
Caco-2 cell permeability assay for drug absorption
Caco-2 cell permeability assay for drug absorptionCaco-2 cell permeability assay for drug absorption
Caco-2 cell permeability assay for drug absorptionPriyansha Singh
 
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Sérgio Sacani
 
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...Sérgio Sacani
 
Isotopic evidence of long-lived volcanism on Io
Isotopic evidence of long-lived volcanism on IoIsotopic evidence of long-lived volcanism on Io
Isotopic evidence of long-lived volcanism on IoSérgio Sacani
 
Artificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PArtificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PPRINCE C P
 
Disentangling the origin of chemical differences using GHOST
Disentangling the origin of chemical differences using GHOSTDisentangling the origin of chemical differences using GHOST
Disentangling the origin of chemical differences using GHOSTSérgio Sacani
 
Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)PraveenaKalaiselvan1
 
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCESTERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCEPRINCE C P
 
Types of different blotting techniques.pptx
Types of different blotting techniques.pptxTypes of different blotting techniques.pptx
Types of different blotting techniques.pptxkhadijarafiq2012
 
Recombination DNA Technology (Nucleic Acid Hybridization )
Recombination DNA Technology (Nucleic Acid Hybridization )Recombination DNA Technology (Nucleic Acid Hybridization )
Recombination DNA Technology (Nucleic Acid Hybridization )aarthirajkumar25
 
Spermiogenesis or Spermateleosis or metamorphosis of spermatid
Spermiogenesis or Spermateleosis or metamorphosis of spermatidSpermiogenesis or Spermateleosis or metamorphosis of spermatid
Spermiogenesis or Spermateleosis or metamorphosis of spermatidSarthak Sekhar Mondal
 
Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Nistarini College, Purulia (W.B) India
 
Unlocking the Potential: Deep dive into ocean of Ceramic Magnets.pptx
Unlocking  the Potential: Deep dive into ocean of Ceramic Magnets.pptxUnlocking  the Potential: Deep dive into ocean of Ceramic Magnets.pptx
Unlocking the Potential: Deep dive into ocean of Ceramic Magnets.pptxanandsmhk
 

Recently uploaded (20)

Biopesticide (2).pptx .This slides helps to know the different types of biop...
Biopesticide (2).pptx  .This slides helps to know the different types of biop...Biopesticide (2).pptx  .This slides helps to know the different types of biop...
Biopesticide (2).pptx .This slides helps to know the different types of biop...
 
9953056974 Young Call Girls In Mahavir enclave Indian Quality Escort service
9953056974 Young Call Girls In Mahavir enclave Indian Quality Escort service9953056974 Young Call Girls In Mahavir enclave Indian Quality Escort service
9953056974 Young Call Girls In Mahavir enclave Indian Quality Escort service
 
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
 
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisRaman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
 
Analytical Profile of Coleus Forskohlii | Forskolin .pdf
Analytical Profile of Coleus Forskohlii | Forskolin .pdfAnalytical Profile of Coleus Forskohlii | Forskolin .pdf
Analytical Profile of Coleus Forskohlii | Forskolin .pdf
 
Work, Energy and Power for class 10 ICSE Physics
Work, Energy and Power for class 10 ICSE PhysicsWork, Energy and Power for class 10 ICSE Physics
Work, Energy and Power for class 10 ICSE Physics
 
A relative description on Sonoporation.pdf
A relative description on Sonoporation.pdfA relative description on Sonoporation.pdf
A relative description on Sonoporation.pdf
 
Caco-2 cell permeability assay for drug absorption
Caco-2 cell permeability assay for drug absorptionCaco-2 cell permeability assay for drug absorption
Caco-2 cell permeability assay for drug absorption
 
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
 
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...
All-domain Anomaly Resolution Office U.S. Department of Defense (U) Case: “Eg...
 
Isotopic evidence of long-lived volcanism on Io
Isotopic evidence of long-lived volcanism on IoIsotopic evidence of long-lived volcanism on Io
Isotopic evidence of long-lived volcanism on Io
 
Artificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C PArtificial Intelligence In Microbiology by Dr. Prince C P
Artificial Intelligence In Microbiology by Dr. Prince C P
 
Disentangling the origin of chemical differences using GHOST
Disentangling the origin of chemical differences using GHOSTDisentangling the origin of chemical differences using GHOST
Disentangling the origin of chemical differences using GHOST
 
Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)
 
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCESTERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
 
Types of different blotting techniques.pptx
Types of different blotting techniques.pptxTypes of different blotting techniques.pptx
Types of different blotting techniques.pptx
 
Recombination DNA Technology (Nucleic Acid Hybridization )
Recombination DNA Technology (Nucleic Acid Hybridization )Recombination DNA Technology (Nucleic Acid Hybridization )
Recombination DNA Technology (Nucleic Acid Hybridization )
 
Spermiogenesis or Spermateleosis or metamorphosis of spermatid
Spermiogenesis or Spermateleosis or metamorphosis of spermatidSpermiogenesis or Spermateleosis or metamorphosis of spermatid
Spermiogenesis or Spermateleosis or metamorphosis of spermatid
 
Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...Bentham & Hooker's Classification. along with the merits and demerits of the ...
Bentham & Hooker's Classification. along with the merits and demerits of the ...
 
Unlocking the Potential: Deep dive into ocean of Ceramic Magnets.pptx
Unlocking  the Potential: Deep dive into ocean of Ceramic Magnets.pptxUnlocking  the Potential: Deep dive into ocean of Ceramic Magnets.pptx
Unlocking the Potential: Deep dive into ocean of Ceramic Magnets.pptx
 

Pdc ani

  • 1. Pyruvate Dehydrogenase Complex SUBMITTED BY:- SUBMITTED TO:- Anikesh Kr. Singh Dr. Prem Chandra M.Sc. FMT (1stSem) DEM - BBAU
  • 2.  Inside the mitochondria, pyruvate is oxidatively decarboxylated to acetyl CoA by pyruvate dehydrogenase (PDH).  It is a multi-enzyme complex with 5co- enzymes &3apo-enzymes. Pyruvate Dehydrogenase Complex
  • 3.  Thiamine pyrophosphate (TPP)  Co-enzyme A (CoA)  FAD  NAD+  Lipoamide  Thelipoic acid, also called thioctic acid has two sulphur atoms &8carbonatoms.  It can accept or donate hydrogen atoms
  • 4. Coenzyme Functions Thiamine Pyro Phosphate (TPP) Decarboxylation and aldehyde group transfer Lipoic acid Carrier of hydrogen or acetyl groups. NADH Electron carrier FADH2 Electron carrier Coenzyme A (CoASH) Acetyl group carrier. Enzyme activity Function Coenzymes Pyruvate dehydrogenase (E1) Decarboxylates pyruvate TPP Dihydrolipoil transacetylase (E2) Catalyze transfer of acetyl group to CoASH Lipoic acid, CoASH Dihydrolipoyl dehydrogenase (E3) Reoxidizes dihydrolipoamide NAD + , FAD
  • 5. 1) Pyruvate Dehydrogenase (Enzyme 1) 2) Dihydro Lipoyl TransAcetylase (Enzyme 2) 3) Dihydro Lipoyl Dehydrogenase (Enzyme 3)
  • 6. Pyruvate Dehydrogenase Subunits Enzyme Abbreviated Prosthetic Group Pyruvate Dehydrogenase E1 Thiamine pyrophosphate (TPP) Dihydrolipoyl Transacetylase E2 Lipoamide Dihydrolipoyl Dehydrogenase E3 FAD, NAD+
  • 7.  It catalyses oxidative decarboxylation.  It requires TPP.  Thiamine (B1),a B-complex group vitamin is essential for utilization of pyruvate.  The two carbon unit remains attached to the enzyme, as hydroxyethyl-TPP.
  • 8.  Hydroxyethyl group isoxidized to formanacetyl group and then transferred from TPP to lipoamide to form acetyl lipoamide. Catalyzes transfer of acetyl group to CoASH
  • 9.  Thelast step isthe oxidation of lipoamide.  At the end of the reaction the cofactors, namely TPP,Lipoamide &FADare regenerated.  FADH2transfers the reducing equivalents to NAD+ to give NADH + H+, which can pass through the ETCto give 3ATP(6ATPfrom 2moles of pyruvate formed from glucose) by oxidative phosphorylation.
  • 10.
  • 11. Pyruvate Dehydrogenase, catalyzes oxidative decarboxylation of pyruvate, to form acetyl-CoA. O O H3C C C HSCoA O NAD+ + CO2 Pyruvate Dehydrogenase pyruvate O H3C C S CoA NADH acetyl-CoA
  • 12. Sequence of reactions catalyzed by Pyruvate Dehydrogenase complex: 1. The keto C of pyruvate reacts with the carbanion of TPP on E1to yield an addition compound. The electron-pulling (+) charged N of the thiazole ring promotes CO2loss. Hydroxyethyl-TPPremains. 2. The hydroxyethyl carbanion on TPP of E1reacts with the disulfide of lipoamide on E2.What was the keto C of pyruvate is oxidized to a carboxylic acid, as the lipoamide disulfide is reduced to a dithiol. The acetate formed by oxidation of the hydroxyethyl is linked to one of the thiols of the reduced lipoamide as a thioester (~).
  • 13. Sequence of reactions (continued) 3. Acetate is transferred from the thiol of lipoamide to the thiol of coenzyme A, yielding acetyl CoA. 4. The reduced lipoamide, swings over to the E3 active site. Dihydrolipoamide is reoxidized to the disulfide, as 2 e+ 2 H+are transferred to a disulfide on E3 (disulfide interchange). 3. The dithiol on E3is reoxidized as 2 e-+ 2 H+are transferred to FAD. The resulting FADH2 is reoxidized by electron transfer to NAD+, to yield NADH + H+.
  • 14. O H3C C S CoA acetyl-coenzyme A Acetyl CoA, a product of the Pyruvate Dehydrogenase reaction, is a central compound in metabolism. The "high energy" thioester linkage makes it an excellent donor of the acetate moiety.
  • 15. glucose-6-P acetyl CoA Glycolysis pyruvate fatty acids ketone bodies cholesterol oxaloacetate citrate Krebs Cycle Acetyl CoA functions as:  input to Krebs Cycle, where the acetate moiety is further degraded to CO2.  donor of acetate for synthesis of fatty acids, ketone bodies, & cholesterol.
  • 16. Regulation of Pyruvate Dehydrogenase Complex:  Product inhibition by NADH & acetyl CoA:  NADH competes with NAD+for binding to E3.  Acetyl CoA competes with CoA for binding to E2.
  • 17. Regulation by E1 phosphorylation/dephosphorylation:  Specific regulatory Kinases & Phosphatases associated with Pyruvate Dehydrogenase in the mitochondrial matrix:  Pyruvate Dehydrogenase Kinases catalyze phosphorylation of serine residues of E1, inhibiting the complex.  Pyruvate Dehydrogenase Phosphatases reverse this inhibition.
  • 18. o Pyruvate Dehydrogenase Kinases are activated by NADH & acetyl-CoA, providing another way the 2 major products of Pyruvate Dehydrogenase reaction inhibit the complex. o Kinase activation involves interaction with E2subunits to sense changes in oxidation state & acetylation of lipoamide caused by NADH & acetyl- CoA.
  • 19. During starvation: • Pyruvate Dehydrogenase Kinase increases in amount in most tissues, including skeletal muscle, via increased gene transcription. • Under the same conditions, the amount of Pyruvate Dehydrogenase Phosphatase decreases. The resulting inhibition of Pyruvate Dehydrogenase prevents muscle and other tissues from catabolizing glucose & gluconeogenesis precursors. • Metabolism shifts toward fat utilization. • Muscle protein breakdown to supply gluconeogenesis precursors is minimized. • Available glucose is spared for use by the brain.
  • 20. The increased cytosolic Ca++that occurs during activation of muscle contraction can lead to Ca++uptake by mitochondria. The higher Ca++stimulates the phosphatase, & dephosphorylation activates Pyruvate Dehydrogenase. Thus mitochondrial metabolism may be stimulated during exercise. Pyruvate Dehydro- genase in matrix mitochondrion Ca++ A Ca++-sensitive isoform of the phosphatase that removes Pifrom E1is expressed in muscle.