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The catalytic characteristics of NocB in nocathiacin biosynthesis from Nocardia sp ATCC 202099

机译:Nocardia SP ATCC 202099的NocathiaN生物合成NoCB的催化特征

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摘要

Nosiheptide and nocathiacin are thiopeptides within the same series with high similarity from chemical structure to organization of the biosynthetic gene cluster. Previously, NosB, a cytochrome P450-like enzyme, was demonstrated to be responsible for the hydroxylation of Glu-6 during nosiheptide maturation. Based on 64% amino acid sequence identity, NocB from Nocardia sp. ATCC 202099 is expected to exhibit a similar catalytic function to NosB. After replacing nosB by nocB in nosiheptide-producing Streptomyces actuosus ATCC 25421, NocB was proved to be a cytochrome P450-like monooxygenase responsible for the hydroxylation of Glu-6 at the g-position in the biosyntheses of both nosiheptide and nocathiacin. Enzyme kinetics and structural difference between nosiheptide and nocathiacin further revealed that NocB is less active than NosB towards unglycosylated intermediate 3 containing a bicyclic core structure.
机译:Noosihepide和Nocathiain是与化学结构的高相似性与生物合成基因簇的化学结构相同的相同系列中的硫肽。 以前,NOSB是一种细胞色素P450样酶,证明了在肽成熟期间Glu-6的羟基化。 基于64%氨基酸序列同一性,来自Nocardia sp的Nocb。 预计ATCC 202099将表现出与NOSB类似的催化功能。 在将NOOCB替代NOOCB在生产的硝基肽的链霉菌ATCC 25421中替代NOCB之后,证明NOCB是一种细胞色素P450样式单氧基酶,其负责Glu-6的羟基化在Noosiphide和NocathiaN的生物合成中的G-poise。 酶动力学和硝基苯肽和NocathiaN之间的结构差异进一步揭示了NOCB比含有双环核心结构的非糖基化的中间体3的鼻孔较小。

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