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Investigating the mechanism of ADP-forming acetyl-CoA synthetase from the protozoan parasite Entamoeba histolytica

机译:研究原生动物寄生虫组织解脂变形虫中ADP形成乙酰辅酶A合成酶的机理

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摘要

ADP-forming acetyl-CoA synthetase (ACD) catalyzes the interconversion of acetyl-CoA and acetate. The related succinyl-CoA synthetase follows a three-step mechanism involving a single phosphoenzyme, but a novel four-step mechanism with two phosphoenzyme intermediates was proposed for Pyrococcus ACD. Characterization of enzyme variants of Entamoeba ACD in which the two proposed phosphorylated His residues were individually altered revealed that only His252 is essential for enzymatic activity. Analysis of variants altered at two residues proposed to interact with the phosphohistidine loop that swings between distinct parts of the active site are consistent with a mechanism involving a single phosphoenzyme intermediate. Our results suggest ACDs with different subunit structures may employ slightly different mechanisms to bridge the span between active sites I and II.
机译:形成ADP的乙酰辅酶A合成酶(ACD)催化乙酰辅酶A和乙酸酯的相互转化。相关的琥珀酰辅酶A合成酶遵循涉及单一磷酸酶的三步机理,但是对于火球菌ACD,提出了具有两个磷酸酶中间体的新型四步机理。 Entamoeba ACD的酶变体的特征(其中两个提议的磷酸化His残基被单独改变)表明,只有His252对酶活性至关重要。提议与在活性位点不同部分之间摆动的磷酸组氨酸环相互作用的两个残基改变的变异体的分析与涉及单个磷酸酶中间体的机理是一致的。我们的结果表明,具有不同亚基结构的ACD可能采用略微不同的机制来桥接活性位点I和II之间的跨度。

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