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Structure of a conserved receptor domain that regulates kinase activity: the cytoplasmic domain of bacterial taxis receptors

机译:调节激酶活性的保守受体结构域的结构:细菌出租车受体的胞质结构域

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摘要

Many bacteria are motile and use a conserved class of transmembrane sensory receptor to regulate cellular taxis toward an optimal living environment. These conserved receptors are typically stimulated by extracellular signals, but also undergo adaptation via covalent modification at specific sites on their cytoplasmic domains. The function of the cytoplasmic domain is to integrate the extracellular and adaptive signals, and to use this integrated information to regulate an associated histidine kinase. The kinase, in turn, triggers a cytoplasmic phosphorylation pathway of the two-component class. The high-resolution structure of a receptor cytoplasmic domain has recently been determined by crystallographic methods and is largely consistent with a structural model independently generated by chemical studies of the domain in the full-length, membrane-bound receptor. These results represent an important step toward a mechanistic understanding of receptor-to-kinase information transfer.
机译:许多细菌是能动的,并使用保守的跨膜感觉受体类别来调节细胞滑行以达到最佳的生活环境。这些保守的受体通常被细胞外信号刺激,但也通过在其胞质结构域的特定位点通过共价修饰进行适应。胞质域的功能是整合细胞外信号和适应性信号,并利用这些整合的信息来调节相关的组氨酸激酶。激酶反过来触发两组分类别的细胞质磷酸化途径。受体胞质结构域的高分辨率结构最近已通过晶体学方法确定,并且与通过全长膜结合受体中的结构域的化学研究独立产生的结构模型基本一致。这些结果代表了机械理解受体到激酶信息转移的重要一步。

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  • 期刊名称 other
  • 作者

    Joseph J Falke; Sung-Hou Kim;

  • 作者单位
  • 年(卷),期 -1(10),4
  • 年度 -1
  • 页码 462–469
  • 总页数 16
  • 原文格式 PDF
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