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首页> 外文期刊>Journal of bacteriology >Identification of cysteine and arginine residues essential for the phosphotransacetylase from Methanosarcina thermophila.
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Identification of cysteine and arginine residues essential for the phosphotransacetylase from Methanosarcina thermophila.

机译:鉴定嗜热甲烷单胞菌的磷酸转乙酰酶必不可少的半胱氨酸和精氨酸残基。

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Phosphotransacetylase catalyzes the following reaction: CoASH + CH3CO2PO3(2-) <==> CH3COSCoA + HPO4(2-) (where CoA is coenzyme A). Based on biochemical characterization of the enzyme from the obligate anaerobe Clostridium kluyveri, a ternary mechanism was proposed in which an unspecified cysteine abstracts a proton from CoASH forming a nucleophilic thiolate anion which attacks acetyl phosphate (J. Henkin and R. H. Abeles, Biochemistry 15:3472-3479, 1976). Heterologous production in Escherichia coli of the phosphotransacetylase from Methanosarcina thermophila, an obligately anaerobic methanoarchaeon, allowed site-specific replacements to identify essential residues. All four cysteines present in the sequence were individually replaced with alanine, and the kinetic constants of the altered enzymes were determined. The results indicated that only C159 is essential for activity; however, replacement with serine resulted in a fully active enzyme. Activity of the unaltered phosphotransacetylase was sensitive to N-ethylmaleimide. Inhibition kinetics of altered enzymes indicated that this sensitivity resulted from modification of C312, which is at the active site but itself is nonessential for catalysis. Five arginines were individually replaced with glutamine. Kinetic analysis of the altered enzymes identified R310 as essential for activity. Of the four nonessential for activity, R87 and R133 appear to be involved in binding CoA.
机译:磷酸转乙酰酶催化以下反应:CoASH + CH3CO2PO3(2-)== CH3COSCoA + HPO4(2-)(其中CoA是辅酶A)。基于专性厌氧克氏梭菌中酶的生化特性,提出了三元机制,其中未指定的半胱氨酸从CoASH中提取质子,形成攻击乙酰磷酸的亲核硫醇盐阴离子(J.Henkin和RH Abeles,生物化学15:3472) -3479,1976年。嗜热甲烷菌(Methanosarcina thermophila)(一种专性厌氧的甲烷古菌)的异源产生于大肠杆菌中,可以进行位点特异性置换以鉴定必要的残基。序列中存在的所有四个半胱氨酸分别被丙氨酸取代,并测定了改变的酶的动力学常数。结果表明,只有C159是活性所必需的。但是,用丝氨酸替代会产生完全活性的酶。未改变的磷酸转乙酰酶的活性对N-乙基马来酰亚胺敏感。改变的酶的抑制动力学表明,这种敏感性是由C312的修饰引起的,C312处于活性位点,但本身对催化没有必要。将五个精氨酸分别用谷氨酰胺代替。对改变的酶的动力学分析确定R310是活性所必需的。在这四个不必要的活性中,R87和R133似乎与结合CoA有关。

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