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首页> 外文期刊>Nature chemical biology >Divergence of multimodular polyketide synthases revealed by a didomain structure
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Divergence of multimodular polyketide synthases revealed by a didomain structure

机译:通过双结构域结构揭示的多模块聚酮化合物合酶的差异

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摘要

The enoylreductase (ER) is the final common enzyme from modular polyketide synthases (PKSs) to be structurally characterized. The 3.0 ?-resolution structure of the didomain comprising the ketoreductase (KR) and ER from the second module of the spinosyn PKS reveals that ER shares an ~600- ? ~2 interface with KR distinct from that of the related mammalian fatty acid synthase (FAS). In contrast to the ER domains of the mammalian FAS, the ER domains of the second module of the spinosyn PKS do not make contact across the two-fold axis of the synthase. This monomeric organization may have been necessary in the evolution of multimodular PKSs to enable acyl carrier proteins to access each of their cognate enzymes. The isolated ER domain showed activity toward a substrate analog, enabling us to determine the contributions of its active site residues.
机译:烯酰还原酶(ER)是来自模块化聚酮化合物合酶(PKS)的最终通用酶,需要进行结构表征。 Spinosyn PKS第二个模块中由酮还原酶(KR)和ER组成的双结构域的3.0α分辨率结构表明ER共有〜600-? 〜2与KR的界面不同于相关的哺乳动物脂肪酸合酶(FAS)。与哺乳动物FAS的ER结构域相反,多杀菌素PKS的第二模块的ER结构域不跨合酶的双向轴接触。在多模块PKS的进化过程中,这种单体组织可能是必需的,以使酰基载体蛋白能够访问其每个关联酶。分离的ER结构域显示对底物类似物的活性,使我们能够确定其活性位点残基的贡献。

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