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结核分枝杆菌中III型聚酮合酶的一个新家族。

A new family of type III polyketide synthases in Mycobacterium tuberculosis.

作者信息

Saxena Priti, Yadav Gitanjali, Mohanty Debasisa, Gokhale Rajesh S

机构信息

National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110 067, India.

出版信息

J Biol Chem. 2003 Nov 7;278(45):44780-90. doi: 10.1074/jbc.M306714200. Epub 2003 Aug 26.

Abstract

The Mycobacterium tuberculosis genome has revealed a remarkable array of polyketide synthases (PKSs); however, no polyketide product has been isolated thus far. Most of the PKS genes have been implicated in the biosynthesis of complex lipids. We report here the characterization of two novel type III PKSs from M. tuberculosis that are involved in the biosynthesis of long-chain alpha-pyrones. Measurement of steady-state kinetic parameters demonstrated that the catalytic efficiency of PKS18 protein was severalfold higher for long-chain acyl-coenzyme A substrates as compared with the small-chain precursors. The specificity of PKS18 and PKS11 proteins toward long-chain aliphatic acyl-coenzyme A (C12 to C20) substrates is unprecedented in the chalcone synthase (CHS) family of condensing enzymes. Based on comparative modeling studies, we propose that these proteins might have evolved by fusing the catalytic machinery of CHS and beta-ketoacyl synthases, the two evolutionarily related members with conserved thiolase fold. The mechanistic and structural importance of several active site residues, as predicted by our structural model, was investigated by performing site-directed mutagenesis. The functional identification of diverse catalytic activity in mycobacterial type III PKSs provide a fascinating example of metabolite divergence in CHS-like proteins.

摘要

结核分枝杆菌基因组已揭示出一系列数量可观的聚酮合酶(PKSs);然而,迄今为止尚未分离出任何聚酮化合物产物。大多数PKS基因都与复杂脂质的生物合成有关。我们在此报告了来自结核分枝杆菌的两种新型III型PKSs的特性,它们参与长链α-吡喃酮的生物合成。稳态动力学参数的测量表明,与短链前体相比,PKS18蛋白对长链酰基辅酶A底物的催化效率高出数倍。PKS18和PKS11蛋白对长链脂肪酰基辅酶A(C12至C20)底物的特异性在查尔酮合酶(CHS)家族的缩合酶中是前所未有的。基于比较建模研究,我们提出这些蛋白可能是通过融合CHS和β-酮酰基合酶的催化机制而进化而来的,这两个在进化上相关的成员具有保守的硫解酶折叠。通过进行定点诱变,研究了我们的结构模型预测的几个活性位点残基的机制和结构重要性。分枝杆菌III型PKSs中多种催化活性的功能鉴定为CHS样蛋白中的代谢物差异提供了一个引人入胜的例子。

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