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首页> 外文期刊>The Journal of biological chemistry >Biochemical and Spatial Coincidence in the Provisional Ser/Thr Protein Kinase Interaction Network of Mycobacterium tuberculosis
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Biochemical and Spatial Coincidence in the Provisional Ser/Thr Protein Kinase Interaction Network of Mycobacterium tuberculosis

机译:分枝杆菌临时Ser / Thr蛋白激酶相互作用网络的生物化学和空间巧合

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Many Gram-positive bacteria coordinate cellular processes by signaling through Ser/Thr protein kinases (STPKs), but the architecture of these phosphosignaling cascades is unknown. To investigate the network structure of a prokaryotic STPK system, we comprehensively explored the pattern of signal transduction in the Mycobacterium tuberculosis Ser/Thr kinome. Autophosphorylation is the dominant mode of STPK activation, but the 11 M. tuberculosis STPKs also show a specific pattern of efficient cross-phosphorylation in vitro. The biochemical specificity intrinsic to each kinase domain was used to map the provisional signaling network, revealing a three-layer architecture that includes master regulators, signal transducers, and terminal substrates. Fluorescence microscopy revealed that the STPKs are specifically localized in the cell. Master STPKs are concentrated at the same subcellular sites as their substrates, providing additional support for the biochemically defined network. Together, these studies imply a branched functional architecture of the M. tuberculosis Ser/Thr kinome that could enable horizontal signal spreading. This systems-level approach provides a biochemical and spatial framework for understanding Ser/Thr phospho-signaling in M. tuberculosis, which differs fundamentally from previously defined linear histidine kinase cascades.
机译:许多革兰氏阳性细菌通过信号传导通过SER / THR蛋白激酶(StPK)来坐标细胞过程,但这些磷酸性级联的结构是未知的。为了调查原核STPK系统的网络结构,我们综合地探索了结核分枝杆菌SER / THR Kinome中的信号转导模式。自磷酸化是STPK活化的主要模式,但11米结核病Stpks还显示了体外有效横磷酸化的特定模式。每个激酶结构域的生物化学特异性用于映射临时信令网络,揭示包括主调节器,信号换能器和终端基板的三层架构。荧光显微镜表明,STPK特异性地在细胞中局部化。主STPK集中在与它们的基板相同的亚细胞场地,为生物化学网络提供额外的支持。这些研究暗示了可以实现水平信号扩展的肺结核Ser / Thr Kinome的分支功能结构。该系统级方法提供了一种生化和空间框架,用于了解在结核病中的SER / THR磷光 - 信号传导,其基本上与先前定义的线性组氨酸激酶级联不同。

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