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首页> 外文期刊>Angewandte Chemie >Acyl-Chain Elongation Drives Ketosynthase Substrate Selectivity in trans-Acyltransferase Polyketide Synthases
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Acyl-Chain Elongation Drives Ketosynthase Substrate Selectivity in trans-Acyltransferase Polyketide Synthases

机译:酰基链延长驱动反式酰基转移酶聚酮化合物合酶中酮合酶底物的选择性。

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摘要

TypeI modular polyketide synthases (PKSs), which are responsible for the biosynthesis of many biologically active agents, possess a ketosynthase (KS) domain within each module to catalyze chain elongation. Acylation of the KS active site Cys residue is followed by transfer to malonyl-ACP to yield an extended -ketoacyl chain (ACP=acyl carrier protein). To date, the precise contribution of KS selectivity in controlling product fidelity has been unclear. Six KS domains from trans-acyltransferase (trans-AT) PKSs were subjected to a mass spectrometry based elongation assay, and higher substrate selectivity was identified for the elongating step than in preceding acylation. A close correspondence between the observed KS selectivity and that predicted by phylogenetic analysis was seen. These findings provide insights into the mechanism of KS selectivity in this important group of PKSs, can serve as guidance for engineering, and show that targeted mutagenesis can be used to expand the repertoire of acceptable substrates.
机译:负责许多生物活性剂生物合成的TypeI模块化聚酮化合物合酶(PKS),在每个模块中都具有一个酮合酶(KS)域,以催化链延长。 KS活性位点Cys残基的酰化之后,转移至丙二酰-ACP以产生延伸的酮-酮基链(ACP =酰基载体蛋白)。迄今为止,还不清楚KS选择性在控制产品保真度方面的确切作用。对来自反式酰基转移酶(trans-AT)PKS的六个KS域进行了基于质谱的延伸分析,并且与先前的酰化反应相比,在延伸步骤中发现了更高的底物选择性。观察到的KS选择性与系统发育分析预测的KS选择性之间存在密切的对应关系。这些发现为这组重要的PKS中的KS选择性机理提供了见识,可作为工程指导,并表明靶向诱变可用于扩大可接受底物的种类。

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