期刊论文详细信息
A B-12-dependent radical SAM enzyme involved in oxetanocin A biosynthesis
Article
关键词: DEPENDENT METHIONINE SYNTHASE;    X-RAY-STRUCTURE;    CRYSTAL-STRUCTURE;    METHYL TRANSFER;    MECHANISM;    METHYLTRANSFERASE;    SUPERFAMILY;    FOSFOMYCIN;    CHEMISTRY;    CATALYSIS;   
DOI  :  10.1038/nature21689
来源: SCIE
【 摘 要 】
Oxetanocin A (OXT-A) is a potent antitumour, antiviral and antibacterial compound. Biosynthesis of OXT-A has been linked to a plasmid-borne Bacillus megaterium gene cluster that contains four genes: oxsA, oxsB, oxrA and oxrB. Here we show that both the oxsA and oxsB genes are required for the production of OXT-A. Biochemical analysis of the encoded proteins, a cobalamin (Cbl)-dependent S-adenosylmethionine (AdoMet) radical enzyme, OxsB, and an HD-domain phosphohydrolase, OxsA, reveals that OXT-A is derived from a 2'-deoxyadenosine phosphate in an OxsB-catalysed ring contraction reaction initiated by hydrogen atom abstraction from C2'. Hence, OxsB represents the first biochemically characterized non-methylating Cbl-dependent AdoMet radical enzyme. X-ray analysis of OxsB reveals the fold of a Cbl-dependent AdoMet radical enzyme, a family of enzymes with an estimated 7,000 members. Overall, this work provides a framework for understanding the interplay of AdoMet and Cbl cofactors and expands the catalytic repertoire of Cbl-dependent AdoMet radical enzymes.
【 授权许可】

Free   

  文献评价指标  
  下载次数:0次 浏览次数:3次