首页> 外文OA文献 >Characterization of the functional role of Asp141, Asp194, and Asp464 residues in the Mn2+-L-malate binding of pigeon liver malic enzyme.
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Characterization of the functional role of Asp141, Asp194, and Asp464 residues in the Mn2+-L-malate binding of pigeon liver malic enzyme.

机译:在鸽子肝脏苹果酸酶的Mn2 + -L-苹果酸结合中Asp141,Asp194和Asp464残基功能作用的表征。

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摘要

Pigeon liver malic enzyme was inactivated and cleaved at Asp141, Asp194, and Asp464 by the Cu2+-ascorbate system in acidic environment. Site-specific mutagenesis was performed at these putative metal-binding sites. Three point mutants, D141N, D194N, and D464N; three double mutants, D(141,194)N, D(194,464)N, and D(141,464)N; and a triple mutant, D(141,194,464)N; as well as the wild-type malic enzyme (WT) were successfully cloned and expressed in Escherichia coli cells. All recombinant enzymes, except the triple mutant, were purified to apparent homogeneity by successive Q-Sepharose and adenosine-2',5'-bisphosphate-agarose columns. The mutants showed similar apparent Km,NADP values to that of the WT. The Km,Mal value was increased in the D141N and D194N mutants. The Km,Mn value, on the other hand, was increased only in the D141N mutant by 14-fold, corresponding to approximately 1.6 kcal/mol for the Asp141-Mn2+ binding energy. Substrate inhibition by L-malate was only observed in WT, D464N, and D(141,464)N. Initial velocity experiments were performed to derive the various kinetic parameters. The possible interactions between Asp141, Asp194, and Asp464 were analyzed by the double-mutation cycles and triple-mutation box. There are synergistic weakening interactions between Asp141 and Asp194 in the metal binding that impel the D(141,194)N double mutant to an overall specificity constant [k(cat)/(Kd,Mn Km,Mal Km,NADP)] at least four orders of magnitude smaller than the WT value. This difference corresponds to an increase of 6.38 kcal/mol energy barrier for the catalytic efficiency. Mutation at Asp464, on the other hand, has partial additivity on the mutations at Asp141 and Asp194. The overall specificity constants for the double mutants D(194,464)N and D(141,464)N or the triple mutant D(141,194,464)N were decreased by only 10- to 100-fold compared to the WT. These results strongly suggest the involvement of Asp141 in the Mn2+-L-malate binding for the pigeon liver malic enzyme. The Asp194 and Asp464, which may be oxidized by nonspecific binding of Cu2+, are involved in the Mn2+-L-malate binding or catalysis indirectly by modulating the binding affinity of Asp141 with the Mn2+.
机译:鸽肝苹果酸酶在酸性环境中被Cu2 +-抗坏血酸系统灭活并在Asp141,Asp194和Asp464裂解。在这些假定的金属结合位点进行位点特异性诱变。三点突变体D141N,D194N和D464N;三个双突变体,D(141,194)N,D(194,464)N和D(141,464)N;和一个三重突变体,D(141,194,464)N;以及野生型苹果酸酶(WT)已成功克隆并在大肠杆菌细胞中表达。除三重突变体外,所有重组酶均通过连续的Q-琼脂糖和2',5'-双磷酸-琼脂糖腺苷柱纯化至表观同质。突变体表现出与野生型相似的表观Km,NADP值。在D141N和D194N突变体中,Km,Mal值增加。另一方面,Km,Mn值仅在D141N突变体中增加了14倍,相当于Asp141-Mn2 +的结合能约为1.6 kcal / mol。仅在WT,D464N和D(141,464)N中观察到了L-苹果酸对底物的抑制作用。进行初始速度实验以导出各种动力学参数。通过双突变周期和三突变盒分析了Asp141,Asp194和Asp464之间可能的相互作用。金属结合中Asp141和Asp194之间存在协同减弱的相互作用,这促使D(141,194)N双突变体达到至少四个数量级的总特异性常数[k(cat)/(Kd,Mn Km,Mal Km,NADP)]。大小小于WT值。该差异对应于催化效率的6.38kcal / mol能垒的增加。另一方面,Asp464的突变与Asp141和Asp194的突变具有部分可加性。与WT相比,双突变体D(194,464)N和D(141,464)N或三突变体D(141,194,464)N的总体特异性常数仅降低了10至100倍。这些结果强烈暗示Asp141参与鸽子肝脏苹果酸酶的Mn2 + -L-苹果酸结合。可能被Cu2 +的非特异性结合氧化的Asp194和Asp464,通过调节Asp141与Mn2 +的结合亲和力间接参与Mn2 + -L-苹果酸的结合或催化。

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