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Role of Arginines in Coenzyme A Binding and Catalysis by the Phosphotransacetylase from Methanosarcina thermophila

机译:精氨酸在辅酶A结合和催化嗜热甲烷菌的磷酸转乙酰酶的催化作用。

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Phosphotransacetylase (EC 2.3.1.8) catalyzes the reversible transfer of the acetyl group from acetyl phosphate to coenzyme A (CoA): CH3COOPO3 2? + CoASH ? CH3COSCoA + HPO4 2?. The role of arginine residues was investigated for the phosphotransacetylase from Methanosarcina thermophila. Kinetic analysis of a suite of variants indicated that Arg 87 and Arg 133 interact with the substrate CoA. Arg 87 variants were reduced in the ability to discriminate between CoA and the CoA analog 3′-dephospho-CoA, indicating that Arg 87 forms a salt bridge with the 3′-phosphate of CoA. Arg 133 is postulated to interact with the 5′-phosphate of CoA. Large decreases in k cat andk cat/Km for all of the Arg 87 and Arg 133 variants indicated that these residues are also important, although not essential, for catalysis. Large decreases ink cat andk cat/Km were also observed for the variants in which lysine replaced Arg 87 and Arg 133, suggesting that the bidentate interaction of these residues with CoA or their greater bulk is important for optimal activity. Desulfo-CoA is a strong competitive inhibitor of the enzyme, suggesting that the sulfhydryl group of CoA is important for the optimization of CoA-binding energy but not for tight substrate binding. Chemical modification of the wild-type enzyme by 2,3-butanedione and substrate protection by CoA indicated that at least one reactive arginine is in the active site and is important for activity. The inhibition pattern of the R87Q variant indicated that Arg 87 is modified, which contributes to the inactivation; however, at least one additional active-site arginine is modified leading to enzyme inactivation, albeit at a lower rate.
机译:磷酸转乙酰酶(EC 2.3.1.8)催化乙酰基从乙酰磷酸向可逆酶A(CoA)的可逆转移:CH 3 COOPO 3 2? + CoASH? CH 3 COSCoA + HPO 4 2?。研究了精氨酸残基对嗜热甲烷单胞菌的磷酸转乙酰酶的作用。一组变体的动力学分析表明,Arg 87和Arg 133与底物CoA相互作用。 Arg 87变体区分CoA和CoA类似物3'-dephospho-CoA的能力降低,表明Arg 87与CoA的3'-磷酸形成盐桥。假定Arg 133与CoA的5'-磷酸相互作用。 k cat k cat / K m <对于所有的Arg 87和Arg 133变体,这些残基对于催化也很重要,尽管不是必需的。 k cat k cat / K m <还观察到了赖氨酸替代Arg 87和Arg 133的变体,表明这些残基与CoA或其更大体积的二齿相互作用对于最佳活性很重要。 Desulfo-CoA是该酶的强竞争抑制剂,表明CoA的巯基对于优化CoA结合能很重要,但对于紧密的底物结合却不重要。 2,3-丁二酮对野生型酶的化学修饰和CoA对底物的保护表明,至少一个反应性精氨酸在活性位点中,对活性很重要。 R87Q变体的抑制模式表明Arg 87被修饰,导致失活。然而,至少一种另外的活性位点精氨酸被修饰导致酶失活,尽管其速率较低。

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