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首页> 外文期刊>Nature Communications >Uncovering the cytochrome P450-catalyzed methylenedioxy bridge formation in streptovaricins biosynthesis
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Uncovering the cytochrome P450-catalyzed methylenedioxy bridge formation in streptovaricins biosynthesis

机译:在Streptovaricins生物合成中揭开细胞色素P450催化的亚基二氧基桥形成

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摘要

Streptovaricin C is a naphthalenic ansamycin antibiotic structurally similar to rifamycins with potential anti-MRSA bioactivities. However, the formation mechanism of the most fascinating and bioactivity-related methylenedioxy bridge (MDB) moiety in streptovaricins is unclear. Based on genetic and biochemical evidences, we herein clarify that the P450 enzyme StvP2 catalyzes the MDB formation in streptovaricins, with an atypical substrate inhibition kinetics. Furthermore, X-ray crystal structures in complex with substrate and structure-based mutagenesis reveal the intrinsic details of the enzymatic reaction. The mechanism of MDB formation is proposed to be an intramolecular nucleophilic substitution resulting from the hydroxylation by the heme core and the keto-enol tautomerization via a crucial catalytic triad (Asp89-His92-Arg72) in StvP2. In addition, in vitro reconstitution uncovers that C6-O-methylation and C4-O-acetylation of streptovaricins are necessary prerequisites for the MDB formation. This work provides insight for the MDB formation and adds evidence in support of the functional versatility of P450 enzymes. Streptovaricin C is an antibiotic containing a methylenedioxy bridge (MDB) moiety essential for its activity. Here, the authors show that a P450 monooxygenase StvP2 catalyses MDB formation, report its crystal structure in complex with the substrate, and elucidate mechanistic details of MDB formation.
机译:Streptovaricin C是一种结构性与具有潜在抗MRSA生物活性的二二霉素的萘霉素抗生素。然而,在Streptovaricins中最令人迷人和生物活性相关的甲基化桥(MDB)部分的形成机制尚不清楚。基于遗传和生化证据,我们在此阐明了P450酶STVP2催化螺旋霉菌中的MDB形成,具有非典型底物抑制动力学。此外,X射线晶体结构复合物与基于基于基于基于基于基于基于基于基于基于酶的诱变,揭示了酶反应的内在细节。提出了MDB形成的机制,是由血红素核心的羟基化和酮 - 烯醇在STVP2中的关键催化三合会(ASP89-HIS92-ARG72)中得到的分子内亲核取代。此外,在体外重构揭示中,C6-O-甲基化和链霉菌的C4-O-乙酰化是MDB形成的必要前提条件。这项工作为MDB的形成提供了洞察力,并为支持P450酶的功能通用性提供了证据。 Streptovaricin C是含有对其活性至关重要的亚甲基二氧化桥(MDB)部分的抗生素。在这里,作者表明,P450单氧化酶STVP2催化MDB形成,将其晶体结构与基材复合地报告,并阐明MDB形成的机械细节。

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