Citrate Synthase: Difference between revisions

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<StructureSection load='1cts' size='450' side='right' scene='User:Wayne_Decatur/1cts_to_2cts_(citrate_synthase)_morph_methods/Camorph/5' caption=''>
[[Image:2cts plus overall reaction.png|380px|left|thumb| <span style="font-size:1.2em;">Citrate synthase 'closed' form ([[2cts]]) and the reaction</span>]]
[[Image:2cts plus overall reaction.png|380px|left|thumb| <span style="font-size:1.2em;">Citrate synthase 'closed' form ([[2cts]]) and the reaction</span>]]
==The Structure and Mechanism of Citrate Synthase==
==The Structure and Mechanism of Citrate Synthase==
<Structure load='1cts' size='480' frame='true' align='right' scene='User:Wayne_Decatur/1cts_to_2cts_(citrate_synthase)_morph_methods/Camorph/5' caption='Citrate Synthase' />
 
'''Citrate synthase''' is an enzyme active in all examined cells, where it is most often responsible for catalyzing the first reaction of the [[The Citric Acid Cycle|citric acid cycle (Krebs Cycle or the tricarboxylic acid <nowiki>[</nowiki>TCA<nowiki>]</nowiki> cycle)]]: the condensation of acetyl-CoA and oxaloacetate to form citrate.  Although in eukaryotes it is a mitochondrial enzyme, and in fact, is often used as a enzyme marker for intact mitochondria, it is encoded by nuclear DNA<ref>[http://en.wikipedia.org/wiki/Citrate_synthase "Citrate Synthase -." Wikipedia, the Free Encyclopedia. Web. 22 Mar. 2010].</ref>. The standard free energy change (ΔG°’) for the citrate synthase reaction is
'''Citrate synthase''' is an enzyme active in all examined cells, where it is most often responsible for catalyzing the first reaction of the [[The Citric Acid Cycle|citric acid cycle (Krebs Cycle or the tricarboxylic acid <nowiki>[</nowiki>TCA<nowiki>]</nowiki> cycle)]]: the condensation of acetyl-CoA and oxaloacetate to form citrate.  Although in eukaryotes it is a mitochondrial enzyme, and in fact, is often used as a enzyme marker for intact mitochondria, it is encoded by nuclear DNA<ref>[http://en.wikipedia.org/wiki/Citrate_synthase "Citrate Synthase -." Wikipedia, the Free Encyclopedia. Web. 22 Mar. 2010].</ref>. The standard free energy change (ΔG°’) for the citrate synthase reaction is
-31.5kJ/mol <ref name="voet">Voet, Donald, Judith G. Voet, and Charlotte W. Pratt. Fundamentals of Biochemistry: Life at the Molecular Level. Hoboken, NJ: Wiley, 2008.</ref>. This negative free energy value means that citrate synthase is likely to function far from equilibrium under physiological conditions, and is thus a rate-determining enzyme in the citric acid cycle.
-31.5kJ/mol <ref name="voet">Voet, Donald, Judith G. Voet, and Charlotte W. Pratt. Fundamentals of Biochemistry: Life at the Molecular Level. Hoboken, NJ: Wiley, 2008.</ref>. This negative free energy value means that citrate synthase is likely to function far from equilibrium under physiological conditions, and is thus a rate-determining enzyme in the citric acid cycle.

Revision as of 12:46, 24 April 2013

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The reaction mechanism for catalysis by citrate synthase


Citrate Synthase Closed Form (Monomer), 2cts

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Citrate Synthase Open Form (Monomer), 1cts

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Literature and Notes


3D structures of Citrate Synthase

Updated on 24-April-2013

2cts – CitS – Francisella tularensis
citric acid cycle (Krebs Cycle or the tricarboxylic acid [TCA] cycle) – CitS – Wild boar
1cts – CitS – Thermotoga maritima
2cts – CitS residues 2-364 – Bacillus subtilis
1cts, 5cts, 6cts – EcCitS (mutant) – Eschericia coli
3cts – EcCitS II
2ibp – CitS – Pyrobaculum aerophilum
1iom, 1ixe – CitS – Thermus thermophilus
1o7x – CitS – Sulfolobus solfataricus
1a59 – CitS – Antarctic bacterium
1aj8 – CitS - Pyrococcus furiosus
5csc, 3cts – cCitS – chicken
1cts, 2cts – pCitS - pig
4e6y – CitS – Vibrio vulnificus

Citrate synthase binary complex

3l97 - EcCitS (mutant) + S-carboxymethyl-CoA
2r9e – TaCitS + citryl dethia CoA – Thermoplasma acidophilum
6cts – cCitS + citryl thioether CoA
3l98, 1owb, 1nxg - EcCitS (mutant) + NADH
3l99 - EcCitS (mutant) + oxaloacetate
2ifc - TaCitS + oxaloacetate

Citrate synthase ternary complex

2r26 - TaCitS + oxaloacetate + S-carboxymethyl-CoA
2h12 - CitS + oxaloacetate + carboxymethyl dethia-CoA – Acetobacter aceti
1al6, 1csr, 1css, 1csh, 1csi - cCitS + oxaloacetate + carboxymethyl dethia-CoA derivative
5cts - cCitS + oxaloacetate + carboxymethyl CoA
1amz - cCitS + malate + nitromethyl dethia-CoA
1csc, 2csc, 3csc, 4csc - cCitS + malate + carboxymethyl CoA
6csc - cCitS + citrate + trifluoroacetonyl-CoA
4cts - pCitS + oxaloacetate + S-acetonyl CoA


See Also

External Resources