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缬氨酸-292在肝脏乙醇脱氢酶烟酰胺结合位点中的作用及其动力学对催化的影响。

Contributions of valine-292 in the nicotinamide binding site of liver alcohol dehydrogenase and dynamics to catalysis.

作者信息

Rubach J K, Ramaswamy S, Plapp B V

机构信息

Department of Biochemistry, The University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

Biochemistry. 2001 Oct 23;40(42):12686-94. doi: 10.1021/bi011540r.

Abstract

The participation of Val-292 in catalysis by alcohol dehydrogenase and the involvement of dynamics were investigated. Val-292 interacts with the nicotinamide ring of the bound coenzyme and may facilitate hydride transfer. The substitution of Val-292 with Ser (V292S) increases the dissociation constants for the coenzymes (NAD(+) by 50-fold, NADH by 75-fold) and the turnover numbers by 3-7-fold. The V292S enzyme crystallized in the presence of NAD(+) and 2,3,4,5,6-pentafluorobenzyl alcohol has an open conformation similar to the structure of the wild-type apo-enzyme, rather than the closed conformation observed for ternary complexes with wild-type enzyme. The V292S substitution perturbs the conformational equilibrium of the enzyme and decreases the kinetic complexity, which permits study of the hydride transfer step with steady-state kinetics. Eyring plots show that the DeltaH for the oxidation (V(1)) of the protio and deuterio benzyl alcohols is 13 kcal/mol and that the kinetic isotope effect of 4.1 is essentially temperature-independent. Eyring plots for the catalytic efficiency for reduction of benzaldehyde (V(2)/K(p)) with NADH or NADD are distinctly convex, being temperature-dependent from 5 to 25 degrees C and temperature-independent from 25 to 50 degrees C; the kinetic isotope effect of 3.2 for V(2)/K(p) is essentially independent of the temperature. The temperature dependencies and isotope effects for V(1) and V(2)/K(p) are not adequately explained by semiclassical transition state theory and are better explained by hydride transfer occurring through vibrationally assisted tunneling.

摘要

研究了缬氨酸-292在乙醇脱氢酶催化中的作用以及动力学的参与情况。缬氨酸-292与结合辅酶的烟酰胺环相互作用,可能促进氢化物转移。用丝氨酸取代缬氨酸-292(V292S)会使辅酶的解离常数增加(NAD⁺增加50倍,NADH增加75倍),周转数增加3至7倍。在NAD⁺和2,3,4,5,6-五氟苄醇存在下结晶的V292S酶具有类似于野生型脱辅酶结构的开放构象,而不是与野生型酶形成的三元复合物所观察到的封闭构象。V292S取代扰乱了酶的构象平衡并降低了动力学复杂性,这使得可以用稳态动力学研究氢化物转移步骤。艾林图表明,质子化和氘代苄醇氧化(V₁)的ΔH为13 kcal/mol,4.1的动力学同位素效应基本上与温度无关。用NADH或NADD还原苯甲醛(V₂/Kp)的催化效率的艾林图明显呈凸形,在5至25℃时与温度有关,在25至50℃时与温度无关;V₂/Kp的3.2动力学同位素效应基本上与温度无关。V₁和V₂/Kp的温度依赖性和同位素效应不能用半经典过渡态理论充分解释,而通过振动辅助隧穿发生的氢化物转移能更好地解释。

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