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组氨酸-134、-147和-150残基在绵羊肝脏胞质丝氨酸羟甲基转移酶的亚基组装、辅因子结合及催化过程中的作用

The role of His-134, -147, and -150 residues in subunit assembly, cofactor binding, and catalysis of sheep liver cytosolic serine hydroxymethyltransferase.

作者信息

Jagath J R, Sharma B, Rao N A, Savithri H S

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560 012, India.

出版信息

J Biol Chem. 1997 Sep 26;272(39):24355-62. doi: 10.1074/jbc.272.39.24355.

Abstract

In an attempt to unravel the role of conserved histidine residues in the structure-function of sheep liver cytosolic serine hydroxymethyltransferase (SHMT), three site-specific mutants (H134N, H147N, and H150N) were constructed and expressed. H134N and H147N SHMTs had Km values for L-serine, L-allo-threonine and beta-phenylserine similar to that of wild type enzyme, although the kcat values were markedly decreased. H134N SHMT was obtained in a dimeric form with only 6% of bound pyridoxal 5'-phosphate (PLP) compared with the wild type enzyme. Increasing concentrations of PLP (up to 500 microM) enhanced the enzyme activity without changing its oligomeric structure, indicating that His-134 may be involved in dimer-dimer interactions. H147N SHMT was obtained in a tetrameric form but with very little PLP (3%) bound to it, suggesting that this residue was probably involved in cofactor binding. Unlike the wild type enzyme, the cofactor could be easily removed by dialysis from H147N SHMT, and the apoenzyme thus formed was present predominantly in the dimeric form, indicating that PLP binding is at the dimer-dimer interface. H150N SHMT was obtained in a tetrameric form with bound PLP. However, the mutant had very little enzyme activity (<2%). The kcat/Km values for L-serine, L-allo-threonine and beta-phenylserine were 80-, 56-, and 33-fold less compared with wild type enzyme. Unlike the wild type enzyme, it failed to form the characteristic quinonoid intermediate and was unable to carry out the exchange of 2-S proton from glycine in the presence of H4-folate. However, it could form an external aldimine with serine and glycine. The wild type and the mutant enzyme had similar Kd values for serine and glycine. These results suggest that His-150 may be the base that abstracts the alpha-proton of the substrate, leading to formation of the quinonoid intermediate in the reaction catalyzed by SHMT.

摘要

为了阐明保守组氨酸残基在绵羊肝脏胞质丝氨酸羟甲基转移酶(SHMT)结构功能中的作用,构建并表达了三个位点特异性突变体(H134N、H147N和H150N)。H134N和H147N SHMT对L-丝氨酸、L-别苏氨酸和β-苯丝氨酸的Km值与野生型酶相似,尽管kcat值明显降低。与野生型酶相比,H134N SHMT以二聚体形式获得,仅结合6%的磷酸吡哆醛(PLP)。增加PLP浓度(高达500 microM)可增强酶活性,而不改变其寡聚结构,这表明His-134可能参与二聚体-二聚体相互作用。H147N SHMT以四聚体形式获得,但与之结合的PLP很少(3%),这表明该残基可能参与辅因子结合。与野生型酶不同,辅因子可以通过透析从H147N SHMT中轻松去除,由此形成的脱辅基酶主要以二聚体形式存在,这表明PLP结合位于二聚体-二聚体界面。H150N SHMT以结合PLP的四聚体形式获得。然而,该突变体的酶活性非常低(<2%)。与野生型酶相比,H150N SHMT对L-丝氨酸、L-别苏氨酸和β-苯丝氨酸的kcat/Km值分别低80倍、56倍和33倍。与野生型酶不同,它无法形成特征性的醌型中间体,并且在H4-叶酸存在的情况下无法进行甘氨酸2-S质子的交换。然而,它可以与丝氨酸和甘氨酸形成外部醛亚胺。野生型和突变型酶对丝氨酸和甘氨酸的Kd值相似。这些结果表明,His-150可能是夺取底物α-质子的碱基,导致在SHMT催化的反应中形成醌型中间体。

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