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Cytochrome P450-Catalyzed Hydroxylation Initiating Ether Formation in Platensimycin Biosynthesis

机译:细胞色素P450催化的羟化反应在醚合成新霉素中形成醚。

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摘要

Platensimycin (PTM) and platencin (PTN) are potent and selective inhibitors of bacterial and mammalian fatty acid synthases. The regio- and stereospecificity of the ether oxygen atom in PTM, which PTN does not have, strongly contribute to the selectivity and potency of PTM. We previously reported the biosynthetic origin of the 11S,16S-ether moiety by characterizing the diterpene synthase PtmT3 as a (16R)-ent-kauran-16-ol synthase and isolating 11-deoxy-16R-hydroxylated congeners of PTM from the ΔptmO5 mutant. PtmO5, a cytochrome P450, was proposed to catalyze formation of the ether moiety in PTM. Here we report the in vitro characterization of PtmO5, revealing that PtmO5 stereoselectively hydroxylates the C-11 position of the ent-kaurane scaffold resulting in an 11S,16R-diol intermediate. The ether moiety, the oxygen of which originates from the P450-catalyzed hydroxylation at C-11, is formed via cyclization of the diol intermediate. This study provides mechanistic insight into ether formation in natural product biosynthetic pathways.
机译:Platensimycin(PTM)和Platencin(PTN)是细菌和哺乳动物脂肪酸合酶的有效和选择性抑制剂。 PTN中没有的PTM中的醚氧原子的区域和立体专一性,极大地影响了PTM的选择性和效力。我们先前通过将二萜合酶PtmT3表征为(16R)-ent-kauran-16-ol合酶并从ΔptmO5突变体中分离出PTM的11-脱氧-16R-羟基同类物来报道11S,16S-醚部分的生物合成来源。 。提出了PtmO5(一种细胞色素P450)来催化PTM中醚部分的形成。在这里,我们报告体外的PtmO5表征,揭示PtmO5立体选择性地羟化了正月桂烷骨架的C-11位置,产生了11S,16R-二醇中间体。通过二醇中间体的环化形成醚部分,该醚部分的氧源自在C-11处P450催化的羟基化。这项研究提供了有关天然产物生物合成途径中醚形成的机理的见解。

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