首页> 美国卫生研究院文献>ACS AuthorChoice >A Radical ClockProbe Uncouples H Atom Abstractionfrom Thioether Cross-Link Formation by the Radical S-Adenosyl-l-methionine Enzyme SkfB
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A Radical ClockProbe Uncouples H Atom Abstractionfrom Thioether Cross-Link Formation by the Radical S-Adenosyl-l-methionine Enzyme SkfB

机译:激进时钟探头解耦H原子抽象自由基S-腺苷-1-蛋氨酸酶SkfB形成硫醚交联键

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摘要

Sporulation killing factor (SKF) is a ribosomally synthesized and post-translationally modified peptide (RiPP) produced by Bacillus. SKF contains a thioether cross-link between the α-carbon at position 40 and the thiol of Cys32, introduced by a member of the radical S-adenosyl-l-methionine (SAM) superfamily, SkfB. Radical SAM enzymes employ a 4Fe–4S cluster to bind and reductively cleave SAM to generate a 5′-deoxyadenosyl radical. SkfB utilizes this radical intermediate to abstract the α-H atom at Met40 to initiate cross-linking. In addition to the cluster that binds SAM, SkfB also has an auxiliary cluster, the function of which is not known. We demonstrate that a substrate analogue with a cyclopropylglycine (CPG) moiety replacing the wild-type Met40 side chain forgoes thioether cross-linking for an alternative radical ring opening of the CPG side chain. The ring opening reaction also takes place with a catalytically inactive SkfB variant in which the auxiliary Fe–S cluster is absent. Therefore, the CPG-containing peptide uncouples H atom abstraction from thioether bond formation, limitingthe role of the auxiliary cluster to promoting thioether cross-linkformation. CPG proves to be a valuable tool for uncoupling H atomabstraction from peptide modification in RiPP maturases and demonstratespotential to leverage RS enzyme reactivity to create noncanonicalamino acids.
机译:孢子形成杀伤因子(SKF)是由芽孢杆菌产生的核糖体合成和翻译后修饰的肽(RiPP)。 SKF在位置40的α-碳与Cys32的巯基之间包含硫醚交联,该硫醚交联是由自由基S-腺苷-1-蛋氨酸(SAM)超家族SkfB的成员引入的。自由基SAM酶利用4Fe-4S簇结合并还原性裂解SAM生成5'-脱氧腺苷基。 SkfB利用这种自由基中间体在Met40处提取α-H原子以引发交联。除了绑定SAM的群集外,SkfB还具有一个辅助群集,其功能未知。我们证明与环丙基甘氨酸(CPG)部分取代野生型Met40侧链的底物类似物放弃硫醚交联CPG侧链的替代自由基开环。开环反应也发生在催化失活的SkfB变体中,其中没有辅助Fe-S团簇。因此,含CPG的肽可将H原子抽象与硫醚键的形成解偶联,从而限制了辅助簇对促进硫醚交联的作用编队。 CPG被证明是解耦H原子的宝贵工具RiPP成熟酶中肽修饰的抽象并证明利用RS酶反应性产生非规范的潜力氨基酸。

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