Veloso D, Cleland W W, Porter J W
Biochemistry. 1981 Feb 17;20(4):887-94. doi: 10.1021/bi00507a036.
The pH variation of the kinetic parameters V and V/K for the oxidation of mevaldate by NADP+ in the presence of CoA (reverse reaction) and for the reduction of mevaldate by NADPH in the presence or absence of CoA (forward reaction) for the reactions catalyzed by 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase was examined. In the reverse reaction a group, X, on the enzyme with a pK of 7.9 must be unprotonated for NADP+ binding and catalysis. The presence of NADP+ shifts this pK to a value below 6. The V/K profile for mevaldate shows that deprotonation of a group, Y, with a pK of 6.7 decreased the reaction rate by a factor of 27. In the forward reaction, the pK of the X group was about 6.9 except when CoA and mevaldate were both present, in which case it was shifted to 7.8. CoA decreased the Kms for mevaldate about 10-fold without changing the Vmax at the optimum protonation state. The catalytic group, X, was identified as a cationic acid, probably histidine. A catalytic mechanism is proposed in which the protonated form of histidine induces hydride transfer from the A side of NADPH by donating a proton to the carbonyl of HMG-CoA or to the aldehyde form of mevaldate. The role of the Y group, which from its pK of 6.7 and the chemistry involved may be a carboxyl group, is presumably to catalyze conversion of mevaldate thiohemiacetal formed in the reduction of HMG-CoA to CoA and the free aldehyde form of mevaldate. Mevaldate was shown by 1H NMR to contain 44% hydrate in D2O and 39% in H2O. When an enzymatic method was used, it was also determined that only one stereoisomer of mevaldate is used by HMG-CoA reductase.
研究了3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)还原酶催化的反应中,在辅酶A存在下NADP⁺氧化甲羟戊酸盐的动力学参数V和V/K的pH变化(逆反应),以及在有或没有辅酶A存在下NADPH还原甲羟戊酸盐的动力学参数V和V/K的pH变化(正反应)。在逆反应中,酶上一个pK为7.9的基团X必须去质子化才能结合NADP⁺并进行催化。NADP⁺的存在使这个pK值移至6以下。甲羟戊酸盐的V/K曲线表明,一个pK为6.7的基团Y去质子化会使反应速率降低27倍。在正反应中,基团X的pK约为6.9,除非同时存在辅酶A和甲羟戊酸盐,此时它会移至7.8。辅酶A使甲羟戊酸盐的Km降低约10倍,而在最佳质子化状态下不改变Vmax。催化基团X被鉴定为阳离子酸,可能是组氨酸。提出了一种催化机制,其中组氨酸的质子化形式通过向HMG-CoA的羰基或甲羟戊酸盐的醛形式提供质子,诱导氢化物从NADPH的A侧转移。基团Y的pK为6.7,从其涉及的化学性质来看可能是一个羧基,其作用可能是催化在HMG-CoA还原为辅酶A和甲羟戊酸盐的游离醛形式过程中形成的甲羟戊酸硫代半缩醛的转化。1H NMR显示甲羟戊酸盐在D2O中含有44%的水合物,在H2O中含有39%的水合物。当使用酶法时,还确定HMG-CoA还原酶仅使用甲羟戊酸盐的一种立体异构体。