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首页> 外文期刊>ACS Chemical Biology >Structure and Functional Analysis of ClbQ, an Unusual Intermediate-Releasing Thioesterase from the Colibactin Biosynthetic Pathway
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Structure and Functional Analysis of ClbQ, an Unusual Intermediate-Releasing Thioesterase from the Colibactin Biosynthetic Pathway

机译:CLBQ的结构和功能分析,来自Colibactin生物合成途径的异常中间释放硫酯酶

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/acbcct/2017/acbcct.2017.12.issue-10/acschembio.7b00479/20171016/images/medium/cb-2017-00479c_0005.gif">Colibactin is a genotoxic hybrid nonribosomal peptide/polyketide secondary metabolite produced by various pathogenic and probiotic bacteria residing in the human gut. The presence of colibactin metabolites has been correlated to colorectal cancer formation in several studies. The specific function of many gene products in the colibactin gene cluster can be predicted. However, the role of ClbQ, a type II editing thioesterase, has not been established. The importance of ClbQ has been demonstrated by genetic deletions that abolish colibactin cytotoxic activity, and recent studies suggest an atypical role in releasing pathway intermediates from the assembly line. Here we report the 2.0 ? crystal structure and biochemical characterization of ClbQ. Our data reveal that ClbQ exhibits greater catalytic efficiency toward acyl-thioester substrates as compared to precolibactin intermediates and does not discriminate among carrier proteins. Cyclized pyridone-containing colibactins, which are off-pathway derivatives, are not viable substrates for ClbQ, while linear precursors are, supporting a role of ClbQ in facilitating the promiscuous off-loading of premature precolibactin metabolites and novel insights into colibactin biosynthesis.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/acbcct/2017/acbcct.2017.12.issue-10/acschembio.7b00479/20171016/images/medium/cmb -2017-00479C_0005.GIF“> COLIBActin是由各种致病和益生菌的遗传毒性杂交非纤维素肽/聚酮二次代谢物,其各种致病和益生菌菌群中饲养在人体肠道中。在几项研究中,Colibactin代谢物的存在与结直肠癌形成相关。可以预测许多基因产物在COLibactin基因簇中的特定功能。然而,尚未建立CLBQ,II型编辑硫酯酶的角色。通过遗传缺失证明了CLBQ的重要性,所述遗传缺失消除了Coolibactin细胞毒性活性,并且最近的研究表明在释放组装线的途径中间体中的非典型作用。在这里我们报告2.0? CLBQ的晶体结构和生化特征。与预直接蛋白中间体相比,我们的数据表明,与前粘蛋白中间体相比,CLBQ对酰基 - 硫酯基材具有更大的催化效率,并且不区分载体蛋白质。环化吡啶酮的Colibactins,其是脱途衍生物,对CLBQ不是可行的底物,而直线前体是支持CLBQ在促进过早的前甲蛋白代谢物和新型洞察中的作用中的作用。

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  • 来源
    《ACS Chemical Biology 》 |2017年第10期| 共11页
  • 作者单位

    Department of Chemistry University of Florida Gainesville Florida 32611 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520 United States;

    Department of Chemistry University of Florida Gainesville Florida 32611 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学 ;
  • 关键词

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