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| ==Mechanism== | | ==Mechanism== |
| [[Image:Pyruvatekinasemechanism.gif| left | 500px]]
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| <ref>{{website1| title=Exercise-Induced Metabolic Acidosis: Where do the Protons come from?|url=http://www.sportsci.org/jour/0102/rar.htm|}}</ref>
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| <scene name='Keegan_Gelvoria_Sandbox_1/N_c_rainbow/null'>Pyruvate Kinase</scene> catalyzes the final reaction of glycolysis. It couples the free energy of PEP cleavage to the generation of ATP during the synthesis of the final product, pyruvate. This reaction necessitates one K+ and two Mg2+ cations to be used in two steps. The first step is the nucleophilic attack of the PEP phosphorous atom by β-phosphoryl oxygen of ADP; this step displaces enolpyruvate while forming ATP. In the second step, enolpyruvate tautomerizes to pyruvate <ref>{{book |author=Voet, Donald; Voet, Judith C.; Pratt, Charlotte W.|title=Fundamentals of Biochemistry: Life at the Molecular Level|edition= 3|pages=502|}}</ref>. The formation of a high-energy intermediate by enolase in the 9th reaction of glycolysis allows for the synthesis of ATP in this reaction. Though the hydrolysis of 2PG is insufficient in driving the synthesis of ATP, the dehydration of 2PG allows for such a reaction to occur by forming a high-energy intermediate. The high potential of PEP reflects the large release of energy that occurs with the conversion of enolpyruvate to its keto tautomer, pyruvate <ref>{{book |author=Voet, Donald; Voet, Judith C.; Pratt, Charlotte W.|title=Fundamentals of Biochemistry: Life at the Molecular Level|edition= 3|pages=503|}}</ref>. | | <scene name='Keegan_Gelvoria_Sandbox_1/N_c_rainbow/null'>Pyruvate Kinase</scene> catalyzes the final reaction of glycolysis. It couples the free energy of PEP cleavage to the generation of ATP during the synthesis of the final product, pyruvate. This reaction necessitates one K+ and two Mg2+ cations to be used in two steps. The first step is the nucleophilic attack of the PEP phosphorous atom by β-phosphoryl oxygen of ADP; this step displaces enolpyruvate while forming ATP. In the second step, enolpyruvate tautomerizes to pyruvate <ref>{{book |author=Voet, Donald; Voet, Judith C.; Pratt, Charlotte W.|title=Fundamentals of Biochemistry: Life at the Molecular Level|edition= 3|pages=502|}}</ref>. The formation of a high-energy intermediate by enolase in the 9th reaction of glycolysis allows for the synthesis of ATP in this reaction. Though the hydrolysis of 2PG is insufficient in driving the synthesis of ATP, the dehydration of 2PG allows for such a reaction to occur by forming a high-energy intermediate. The high potential of PEP reflects the large release of energy that occurs with the conversion of enolpyruvate to its keto tautomer, pyruvate <ref>{{book |author=Voet, Donald; Voet, Judith C.; Pratt, Charlotte W.|title=Fundamentals of Biochemistry: Life at the Molecular Level|edition= 3|pages=503|}}</ref>. |
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| </StructureSection> | | </StructureSection> |
| ==3D structures of pyruvate kinase==
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| Updated on {{REVISIONDAY2}}-{{MONTHNAME|{{REVISIONMONTH}}}}-{{REVISIONYEAR}}
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| {{#tree:id=OrganizedByTopic|openlevels=0|
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| *Pyruvate kinase
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| **[[3bjf]], [[3bjt]], [[1t5a]], [[1zjh]], [[3srf]], [[3srh]] - hPyK M1/M2 - human<br />
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| **[[4wj8]], [[4qg6]], [[4qg8]], [[4qg9]], [[4qgc]], [[3g2g]], [[4yj5]], [[6b6u]] - hPyK M1/M2 (mutant)<br />
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| **[[2vgb]] – hPyK R/L<br />
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| **[[2vgf]], [[2vgg]], [[2vgi]] - hPyK R/L (mutant) <br />
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| **[[6nn5]], [[6nn7]], [[6nn8]] – hPyK PKLR (mutant)<br />
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| **[[1pkm]], [[1pyk]] – PyK – cat<br />
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| **[[1f3w]] – rPyK – rabbit<br />
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| **[[1f3x]] - rPyK (mutant) <br />
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| **[[1pky]], [[4yng]] – EcPyK - ''Eschericia coli''<br />
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| **[[1e0t]], [[1e0u]] - EcPyK (mutant) <br />
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| **[[3t05]], [[3t0t]] – SaPyK – ''Staphylococcus aureus''<br />
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| **[[3qtg]] – PyK – ''Pyrobaculum aerophilum''<br />
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| **[[4krz]] - TcPyK – ''Trypanosoma cruzei''<br />
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| **[[5wrp]] - MtPyK – ''Mycobacterium tuberculosis''<br />
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| **[[3hqn]], [[3e0w]], [[1pkl]] – LmPyK – ''Leishmania mexicana''<br />
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| **[[3khd]] – PyK – ''Plasmodium falciparum''<br />
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| **[[3gg8]], [[3eoe]] – PyK – ''Toxoplasma gondii''<br />
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| **[[3ma8]], [[4drs]] – PyK – ''Cryptosporidium parvum''<br />
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| **[[2e28]] - PyK (mutant) – ''Geobacillus stearothermophilus''<br />
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| *Pyruvate kinase binary complex
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| **[[4b2d]] - hPyK M1/M2 + fructose bisphosphate<br />
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| **[[4rpp]] - hPyK M2 (mutant) + fructose bisphosphate<br />
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| **[[4fxj]] - hPyK M1/M2 + phenylalanine<br />
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| **[[6gg3]] - hPyK M2 + alanine<br />
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| **[[6gg4]] - hPyK M2 + phenylalanine<br />
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| **[[6gg5]] - hPyK M2 + tryptophan<br />
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| **[[6gg6]] - hPyK M2 + serine<br />
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| **[[6nub]] - hPyK M2 (mutant) + serine<br />
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| **[[6nu1]] - hPyK M2 + cysteine<br />
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| **[[6nu5]] - hPyK M2 (mutant) + cysteine<br />
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| **[[6ech]], [[6eck]] - PyK PKLR + fructose bisphosphate - rat<br />
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| **[[5x1v]], [[5x1w]] - hPyK M2 + inhibitor<br />
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| **[[4rpp]] - hPyK M2 (mutant) + fructose bisphosphate<br />**[[3qv9]] – TcPyK + Ponceau S <br />
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| **[[3qv6]] – LmPyK + acid blue 80<br />
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| **[[3e0v]] – LmPyK + sulfate<br />
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| **[[3hqq]] - LmPyK + fructose bisphosphate<br />
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| **[[3qv8]] – LmPyK + benzothiazole<br />
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| **[[3pp7]] – LmPyK + suramin<br />
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| **[[3is4]], [[3ktx]] – LmPyK + pyrenetetrasulfonic acid<br />
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| **[[3t07]] – SaPyK + bis-indole alkaloid<br />
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| **[[4hyw]] – TbPyK + fructose bisphosphate – ''Trypanosoma brucei''<br />
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| **[[5ws8]] - MtPyK + oxalate<br />
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| **[[6p0y]] - CpPyK + ADP<br />
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| *Pyruvate kinase higher complex
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| **[[3me3]] – hPyK M1/M2 + aniline derivative + fructose bisphosphate<br />
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| **[[4g1n]] - hPyK M1/M2 + pyridazine derivative + oxalate<br />
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| **[[3h6o]] - hPyK M1/M2 + pyridazine derivative + fructose bisphosphate<br />
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| **[[3gqy]], [[3gr4]], [[3u2z]] - hPyK M1/M2 + piperazine derivative + fructose bisphosphate<br />
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| **[[5x0i]] - hPyK M2 (mutant) + serine + fructose bisphosphate<br />
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| **[[5x1v]], [[5x1w]] - hPyK M2 + activator + fructose bisphosphate<br />
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| **[[4jpg]] - hPyK M1/M2 + pyrimidine derivative + fructose bisphosphate<br />
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| **[[3srd]] - hPyK M1/M2 + oxalate + fructose bisphosphate<br />
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| **[[4fxf]] - hPyK M1/M2 + oxalate + ATP + fructose bisphosphate<br />
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| **[[4ima]], [[4ip7]] - hPyK L (mutant) + citrate + adenosine + fructose bisphosphate<br />
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| **[[3n25]] – rPyK M1/M2 + proline + Mn + pyruvate<br />
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| **[[2g50]] - rPyK M1/M2 + alanine + Mn + pyruvate<br />
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| **[[1pkn]] - rPyK + Mn + pyruvate<br />
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| **[[1aqf]] – rPyK + Mg + phospholactate<br />
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| **[[1a49]], [[1a5u]] - rPyK + ATP + oxalate<br />
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| **[[1a3w]] – yPyK + Mn + phosphoglycolic acid + fructose bisphosphate – yeast<br />
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| **[[1a3x]] - yPyK + Mn + phosphoglycolic acid<br />
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| **[[4hyv]] – TbPyK + phosphoenolpyruvate + fructose bisphosphate <br />
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| **[[4kct]] – TbPyK + pyruvate + fructose bisphosphate <br />
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| **[[4kcu]] – TbPyK + malate + fructose bisphosphate <br />
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| **[[4kcv]] – TbPyK + oxoglutarate + fructose bisphosphate <br />
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| **[[4kcw]] – TbPyK + oxalate + fructose bisphosphate <br />
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| **[[4ks0]] – TcPyK + oxalate + fructose bisphosphate <br />
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| **[[5ws9]] – MtPyK + oxalate + AMP + ATP <br />
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| **[[5wsa]] – MtPyK + oxalate + glucose-6-phosphate <br />
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| **[[5wsb]], [[5wsc]] – MtPyK + oxalate + glucose-6-phosphate + AMP<br />
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| **[[6ito]] – MtPyK + oxalate + ribose-5-phosphate + AMP<br />
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| **[[3hqo]] – LmPyK + ATP + oxalate<br />
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| **[[3hqp]] - LmPyK + ATP + oxalate + fructose bisphosphate<br />
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| **[[3qv7]] – LmPyK + acid blue 25 + Ponceau S<br />
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| **[[3srk]] – LmPyK + saccharine + inhibitor<br />
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| **[[6qxl]] – PyK + malonate + glucose-6-phosphate + Mg – ''Pseudomonas aerugnosa''<br />
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| }}
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| ==Additional Resources== | | ==Additional Resources== |