Rokosz L L, Boulton D A, Butkiewicz E A, Sanyal G, Cueto M A, Lachance P A, Hermes J D
Department of Biophysical Chemistry, Merck Research Laboratories, Rahway, New Jersey 07065-0900.
Arch Biochem Biophys. 1994 Jul;312(1):1-13. doi: 10.1006/abbi.1994.1273.
A cDNA for the human cytoplasmic 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) synthase (EC 4.1.3.5) was subcloned and expressed from a T7-based vector in Escherichia coli. The over-produced enzyme was purified using a three-step protocol that generated 20 to 30 mg protein/liter cell culture. The physical and catalytic properties of the recombinant synthase are similar to those reported for the nonrecombinant enzymes from chicken liver [Clinkenbeard et al. (1975a) J. Biol. Chem. 250, 3124-3135] and rat liver [Mehrabian et al. (1986) J. Biol. Chem. 261, 16249-16255]. Mutation of Cys129 to serine or alanine destroys HMG-CoA synthase activity by disrupting the first catalytic step in HMG-CoA synthesis, enzyme acetylation by acetyl coenzyme A. Furthermore, unlike the wild-type enzyme, neither mutant was capable of covalent modification by the beta-lactone inhibitor, L-659,699 [Greenspan et al. (1987) Proc. Natl. Acad. Sci. USA 84, 7488-7492]. Kinetic analysis of the inhibition by L-659,699 revealed that this compound is a potent inhibitor of the recombinant human synthase, with an inhibition constant of 53.7 nM and an inactivation rate constant of 1.06 min-1.
人细胞质3-羟基-3-甲基戊二酰辅酶A(HMG-CoA)合酶(EC 4.1.3.5)的cDNA被亚克隆,并在基于T7的载体中于大肠杆菌中表达。过量产生的酶通过三步方案进行纯化,该方案每升细胞培养物可产生20至30毫克蛋白质。重组合酶的物理和催化特性与鸡肝[克林肯比尔德等人(1975a)《生物化学杂志》250,3124 - 3135]和大鼠肝[梅赫拉比安等人(1986)《生物化学杂志》261,16249 - 16255]中报道的非重组酶相似。将半胱氨酸129突变为丝氨酸或丙氨酸会破坏HMG-CoA合酶活性,因为这会干扰HMG-CoA合成的第一步催化反应,即酶被乙酰辅酶A乙酰化。此外,与野生型酶不同,两种突变体均不能被β-内酯抑制剂L-659,699[格林斯潘等人(1987)《美国国家科学院院刊》84,7488 - 7492]进行共价修饰。对L-659,699抑制作用的动力学分析表明,该化合物是重组人合酶的强效抑制剂,抑制常数为53.7 nM,失活速率常数为1.06分钟⁻¹。