Andi Babak, West Ann H, Cook Paul F
Department of Chemistry and Biochemistry, University of Oklahoma, 620 Parrington Oval, Norman, Oklahoma 73019, USA.
Biochemistry. 2004 Sep 21;43(37):11790-5. doi: 10.1021/bi048766p.
Kinetic data have been collected suggesting a preferred sequential ordered kinetic mechanism for the histidine-tagged homocitrate synthase (HCS) from Saccharomyces cerevisiae with alpha-ketoglutarate binding before AcCoA and CoA released before homocitrate. Oxaloacetate is also a substrate for HCS, but with lower affinity than alpha-ketoglutarate. In agreement with the ordered kinetic mechanism desulfo-CoA is uncompetitive and citrate is competitive vs alpha-ketoglutarate. Varying AcCoA, citrate is a noncompetitive inhibitor as predicted, but CoA is noncompetitive vs AcCoA suggesting binding of CoA to E:homocitrate and E:alpha-ketoglutarate. The product CoA behaves in a manner identical to the dead-end analogue desulfo-CoA, suggesting an E:alpha-ketoglutarate:CoA dead-end complex. Data further suggest an irreversible reaction overall, in agreement with the downhill nature of the reaction as a result of homocitryl-CoA hydrolysis. Fluorescence titration data generally agree with the steady state data, but show finite binding of CoA and AcCoA to free enzyme, suggesting that the mechanism may be random with a high degree of synergism of binding between the reactants.
已收集动力学数据,表明来自酿酒酵母的组氨酸标记的高柠檬酸合酶(HCS)具有一种优先的顺序有序动力学机制,其中α-酮戊二酸在乙酰辅酶A之前结合,辅酶A在高柠檬酸之前释放。草酰乙酸也是HCS的底物,但亲和力低于α-酮戊二酸。与有序动力学机制一致,脱硫辅酶A是非竞争性的,柠檬酸对α-酮戊二酸是竞争性的。改变乙酰辅酶A时,柠檬酸如预测的那样是非竞争性抑制剂,但辅酶A对乙酰辅酶A是非竞争性的,这表明辅酶A与E:高柠檬酸和E:α-酮戊二酸结合。产物辅酶A的行为与终产物类似物脱硫辅酶A相同,表明存在E:α-酮戊二酸:辅酶A终产物复合物。数据进一步表明总体反应是不可逆的,这与由于高柠檬酸辅酶A水解导致的反应的下坡性质一致。荧光滴定数据总体上与稳态数据一致,但显示辅酶A和乙酰辅酶A与游离酶有有限的结合,表明该机制可能是随机的,反应物之间的结合具有高度协同性。