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首页> 外文期刊>Nature chemical biology >Cleavage of a carbon-fluorine bond by an engineered cysteine dioxygenase.
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Cleavage of a carbon-fluorine bond by an engineered cysteine dioxygenase.

机译:通过工程化半胱氨酸二恶英酶切割碳氟键。

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摘要

Cysteine dioxygenase (CDO) plays an essential role in sulfur metabolism by regulating homeostatic levels of cysteine. Human CDO contains a post-translationally generated Cys93-Tyr157 cross-linked cofactor. Here, we investigated this Cys-Tyr cross-linking by incorporating unnatural tyrosines in place of Tyr157 via a genetic method. The catalytically active variants were obtained with a thioether bond between Cys93 and the halogen-substituted Tyr157, and we determined the crystal structures of both wild-type and engineered CDO variants in the purely uncross-linked form and with a mature cofactor. Along with mass spectrometry and~(19)F NMR, these data indicated that the enzyme could catalyze oxidative C-F or C-Cl bond cleavage, resulting in a substantial conformational change of both Cys93 and Tyr157 during cofactor assembly. These findings provide insights into the mechanism of Cys-Tyr cofactor biogenesis and may aid the development of bioinspired aromatic carbon-halogen bond activation.
机译:半胱氨酸二恶英通过调节半胱氨酸的稳态水平在硫磺代谢中起重要作用。 人类CDO包含翻译后生成的CYS93-TYR157交联辅因子。 在这里,我们通过遗传方法将不自然的酪氨酸掺入Tyr157来调查该Cys-Tyr串联。 用Cys93和卤素取代的Tyr157之间的硫醚键获得催化活性变体,并且我们确定了纯粹无交联的形状和成熟的辅因子的野生型和工程化CDO变体的晶体结构。 除了质谱和〜(19)F NMR,这些数据表明该酶可以催化氧化C-F或C-C1键切割,导致Cys93和Tyr157期间的Cofactor组件中的大量构象变化。 这些调查结果提供了对Cys-Tyr Cofactor生物发生机制的见解,并可以帮助生物透露芳族碳 - 卤素键活化的发育。

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  • 来源
    《Nature chemical biology》 |2018年第9期|共8页
  • 作者单位

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Institute of Biophysics Chinese Academy of Sciences Beijing P.R. China;

    Institute of Biophysics Chinese Academy of Sciences Beijing P.R. China;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

    Department of Chemistry University of Texas at San Antonio San Antonio TX USA;

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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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