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Role of Lys-226 in the catalytic mechanism of Bacillus stearothermophilus serine hydroxymethyltransferase - Crystal structure and kinetic studies

机译:Lys-226在嗜热脂肪芽孢杆菌丝氨酸羟甲基转移酶催化机理中的作用-晶体结构和动力学研究

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摘要

Serine hydroxymethyltransferase (SHMT), a pyridoxal 5'-phosphate (PLP)-dependent enzyme catalyzes the reversible conversion of L-Ser and tetrahydropteroylglutarnate (H(4)PteGlu) to Gly and 5,10-methylene tetrahydropteroylglutarnate (CH2-H(4)PteGlu). Biochemical and structural studies on this enzyme have implicated several residues in the catalytic mechanism, one of them being the active site lysine, which anchors PLP. It has been proposed that this residue is crucial for product expulsion. However, in other PLP-dependent enzymes, the corresponding residue has been implicated in the proton abstraction step of catalysis. In the present investigation, Lys-226 of Bacillus stearothermophilus SHMT (bsSHMT) was mutated to Met and Gln to evaluate the role of this residue in catalysis. The mutant enzymes contained 1 mol of PLP per mol of subunit suggesting that Schiff base formation with lysine is not essential for PLP binding. The 3D structure of the mutant enzymes revealed that PLP was bound at the active site in an orientation different from that of the wild-type enzyme. In the presence of substrate, the PLP ring was in an orientation superimposable with that of the external aldimine complex of wild-type enzyme. However, the mutant enzymes were inactive, and the kinetic analysis of the different steps of catalysis revealed that there was a drastic reduction in the rate of formation of the quinonoid intermediate. Analysis of these results along with the crystal structures suggested that K-226 is responsible for flipping of PLP from one orientation to another which is crucial for H(4)PteGlu-dependent Cα-Cβ bond cleavage of L-Ser.
机译:丝氨酸羟甲基转移酶(SHMT)是一种吡-醛5'-磷酸(PLP)依赖性酶,可催化L-Ser和四氢蝶呤戊二酸酯(H(4)PteGlu)可逆转化为Gly和5,10-亚甲基四氢蝶呤戊二酸酯(CH2-H(4 )。对该酶的生化和结构研究已在催化机理中涉及多个残基,其中之一是固定PLP的活性位点赖氨酸。已经提出,该残留物对于排出产品至关重要。但是,在其他PLP依赖性酶中,相应的残基也与催化质子提取步骤有关。在本研究中,嗜热脂肪芽孢杆菌SHMT(bsSHMT)的Lys-226突变为Met和Gln,以评估该残基在催化中的作用。突变酶每摩尔亚基含有1摩尔PLP,这表明与赖氨酸形成席夫碱对PLP结合不是必需的。突变酶的3D结构表明PLP以不同于野生型酶的方向结合在活性位点上。在存在底物的情况下,PLP环的方向与野生型酶的外部醛亚胺复合物的方向重叠。然而,突变酶是无活性的,并且对不同催化步骤的动力学分析表明,醌类中间体的形成速率急剧降低。对这些结果以及晶体结构的分析表明,K-226负责将PLP从一个方向翻转到另一个方向,这对于L-Ser的H(4)PteGlu依赖性Cα-Cβ键裂解至关重要。

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