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Brassica juncea 3-hydroxy-3-methylglutaryl (HMG)-CoA synthase 1: expression and characterization of recombinant wild-type and mutant enzymes

机译:芥菜型3-羟基-3-甲基戊二酰(HMG)-CoA合酶1:重组野生型和突变型酶的表达与表征

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摘要

3-Hydroxy-3-methylglutaryl (HMG)-CoA synthase (HMGS; EC 2.3.3.10) is the second enzyme in the cytoplasmic mevalonate pathway of isoprenoid biosynthesis, and catalyses the condensation of acetyl-CoA with acetoacetyl-CoA (AcAc-CoA) to yield S-HMG-CoA. In this study, we have first characterized in detail a plant HMGS, Brassica juncea HMGS1 (BjHMGS1), as a His6-tagged protein from Escherichia coli. Native gel electrophoresis analysis showed that the enzyme behaves as a homodimer with a calculated mass of 105.8 kDa. It is activated by 5 mM dithioerythreitol and is inhibited by F-244 which is specific for HMGS enzymes. It has a pH optimum of 8.5 and a temperature optimum of 35 °C, with an energy of activation of 62.5 J·mol−1. Unlike cytosolic HMGS from chicken and cockroach, cations like Mg2+, Mn2+, Zn2+ and Co2+ did not stimulate His6–BjHMGS1 activity in vitro; instead all except Mg2+ were inhibitory. His6–BjHMGS1 has an apparent Km-acetyl-CoA of 43 μM and a Vmax of 0.47 μmol·mg−1·min−1, and was inhibited by one of the substrates (AcAc-CoA) and by both products (HMG-CoA and HS-CoA). Site-directed mutagenesis of conserved amino acid residues in BjHMGS1 revealed that substitutions R157A, H188N and C212S resulted in a decreased Vmax, indicating some involvement of these residues in catalytic capacity. Unlike His6–BjHMGS1 and its soluble purified mutant derivatives, the H188N mutant did not display substrate inhibition by AcAc-CoA. Substitution S359A resulted in a 10-fold increased specific activity. Based on these kinetic analyses, we generated a novel double mutation H188N/S359A, which resulted in a 10-fold increased specific activity, but still lacking inhibition by AcAc-CoA, strongly suggesting that His-188 is involved in conferring substrate inhibition on His6–BjHMGS1. Substitution of an aminoacyl residue resulting in loss of substrate inhibition has never been previously reported for any HMGS.
机译:3-羟基-3-甲基戊二酰(HMG)-CoA合酶(HMGS; EC 2.3.3.10)是类异戊二烯生物合成的胞质甲羟戊酸途径中的第二种酶,并催化乙酰-CoA与乙酰乙酰-CoA(AcAc-CoA)的缩合反应),得到S-HMG-CoA。在这项研究中,我们首先详细描述了一种植物HMGS,即芥菜HMGS1(BjHMGS1),它是大肠杆菌中带有His6标签的蛋白质。天然凝胶电泳分析表明,该酶表现为同型二聚体,计算质量为105.8 kDa。它被5 mM二硫赤藓糖醇激活,并被HMGS酶特有的F-244抑制。它的最适pH值为8.5,最适温度为35°C,活化能为62.5J·mol-1。与来自鸡和蟑螂的胞质HMGS不同,Mg2 +,Mn2 +,Zn2 +和Co2 +等阳离子不会在体外刺激His6-BjHMGS1的活性。相反,除Mg2 +外,其他所有物质均具有抑制作用。 His6–BjHMGS1的表观Km-乙酰基-CoA为43μM,Vmax为0.47μmol·mg-1·min-1,并被一种底物(AcAc-CoA)和两种产物(HMG-CoA)抑制和HS-CoA)。 BjHMGS1中保守氨基酸残基的定点诱变显示,取代R157A,H188N和C212S导致Vmax降低,表明这些残基在催化能力中有些参与。与His6-BjHMGS1及其可溶的纯化突变体衍生物不同,H188N突变体不显示AcAc-CoA对底物的抑制作用。取代S359A导致比活增加了10倍。基于这些动力学分析,我们产生了一个新的双突变H188N / S359A,其导致比活性增加了10倍,但仍缺乏AcAc-CoA的抑制作用,这强烈表明His-188参与了对His6的底物抑制–BjHMGS1。以前从未报道过任何HMGS会取代氨基酰基残基而导致底物抑制作用丧失。

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