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Biosynthesis of the nosiheptide indole side ring centers on a cryptic carrier protein NosJ

机译:诺西肽吲哚侧环的生物合成以载体蛋白NosJ为中心

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摘要

Nosiheptide is a prototypal thiopeptide antibiotic, containing an indole side ring in addition to its thiopeptide-characteristic macrocylic scaffold. This indole ring is derived from 3-methyl-2-indolic acid (MIA), a product of the radical S-adenosylmethionine enzyme NosL, but how MIA is incorporated into nosiheptide biosynthesis remains to be investigated. Here we report functional dissection of a series of enzymes involved in nosiheptide biosynthesis. We show NosI activates MIA and transfers it to the phosphopantetheinyl arm of a carrier protein NosJ. NosN then acts on the NosJ-bound MIA and installs a methyl group on the indole C4, and the resulting dimethylindolyl moiety is released from NosJ by a hydrolase-like enzyme NosK. Surface plasmon resonance analysis show that the molecular complex of NosJ with NosN is much more stable than those with other enzymes, revealing an elegant biosynthetic strategy in which the reaction flux is controlled by protein–protein interactions with different binding affinities.
机译:Nosiheptide是一种原型硫肽抗生素,除具有硫肽特征的大环骨架外,还包含吲哚侧环。该吲哚环衍生自3-甲基-2-吲哚酸(MIA),它是自由基S-腺苷甲硫氨酸酶NosL的产物,但是如何将MIA掺入诺庚肽的生物合成中尚待研究。在这里,我们报告涉及诺西肽生物合成的一系列酶的功能解剖。我们显示NosI激活MIA并将其转移至载体蛋白NosJ的磷酸泛肽亚基臂。然后,NosN作用于与NosJ结合的MIA,并在吲哚C4上安装一个甲基,然后通过水解酶样酶NosK从NosJ释放所得的二甲基吲哚基部分。表面等离子体共振分析表明,NosJ与NosN的分子复合物比其他酶具有更高的稳定性,揭示了一种优雅的生物合成策略,其中反应通量由具有不同结合亲和力的蛋白质-蛋白质相互作用控制。

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