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首页> 外文期刊>Biochemistry >Proper orientation of the nicotinamide ring of NADP is important for the precatalytic conformational change in the 6-phosphogluconate dehydrogenase reaction
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Proper orientation of the nicotinamide ring of NADP is important for the precatalytic conformational change in the 6-phosphogluconate dehydrogenase reaction

机译:NADP烟酰胺环的正确取向对于6-磷酸葡萄糖酸脱氢酶反应中的催化前构象变化很重要

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A recent study suggested sheep liver 6-phosphogluconate dehydrogenase (6PGDH) sees the oxidized and reduced cofactor differently [Cervellati, C., Dallocchio, F., Bergamini, C. M., and Cook, P. F. (2005) Biochemistry 44, 2432-2440]. Data were consistent with a rotation into the active site of the nicotinamide ring of NADP upon its reduction, resulting in a displacement of the 1-carboxylate of 3-keto-6PG better positioning it for decarboxylation, and further suggested a role of the cofactor in generating the precatalytic conformation of the enzyme. To further probe the role of the cofactor, multiple isotope effects were measured for the enzyme with mutations of the two residues that directly interact with the nicotinamide ring of NADP(+), methionine 13 and glutamate 131. Kinetic and isotope effect data obtained in this study will thus be interpreted in terms of a mechanism that includes the rotation of the nicotinamide ring. The M13V, M13Q, M13C, and E131A mutant enzymes were characterized with respect to their kinetic parameters, deuterium, C-13, multiple deuterium/C-13 isotope effects, and the kinetics of utilization of 2-deoxy-6PG. Data suggest the position of the nicotinamide ring is important in identifying the open and closed conformations of the enzyme, with the latter optimal for catalysis. The 6PGDH reaction provides an excellent example of the use of substrate binding energy to drive catalysis.
机译:最近的一项研究表明,绵羊肝6-磷酸葡萄糖酸酯脱氢酶(6PGDH)观察到氧化和还原的辅因子不同[Cervellati,C.,Dallocchio,F.,Bergamini,C.M.,and Cook,P.F.(2005)Biochemistry 44,2432-2440]。数据与还原后NADP的烟酰胺环旋转进入活性位点相一致,从而导致3-keto-6PG的1-羧酸盐发生置换,更好地使其脱羧,并进一步暗示了辅因子在产生酶的催化前构象。为了进一步探查辅因子的作用,针对具有与NADP(+)的烟酰胺环,蛋氨酸13和谷氨酸131直接相互作用的两个残基的突变的酶,测量了多种同位素效应。在此获得的动力学和同位素效应数据因此,将根据包括烟酰胺环旋转的机理来解释本研究。 M13V,M13Q,M13C和E131A突变酶的动力学参数,氘,C-13,多个氘/ C-13同位素效应和利用2-deoxy-6PG的动力学进行了表征。数据表明烟酰胺环的位置对于鉴定酶的开放和闭合构象很重要,后者对于催化作用是最佳的。 6PGDH反应提供了使用底物结合能驱动催化的一个极好的例子。

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