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Organization and mode of action of two component system signaling circuits from the various kingdoms of life

机译:来自不同生活领域的两个组成部分系统信号回路的组织和作用方式

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Two-component system (TCS) signaling circuits regulate numerous cellular processes in response to environmental cues in both prokaryotic and eukaryotic cells. These signaling circuits are all based on phosphoryl-group transfers between histidine and aspartate containing modules of sensor kinase and response regulator proteins. Curiously, the architecture and organization of prokaryotic and eukaryotic two-component systems reveal notable variations, raising the question of whether the input-response specificity that governs the majority of prokaryotic TCSs also governs the eukaryotic ones. In this review, we contrast the TCS architecture and signaling circuits of prokaryotes and eukaryotes, and discuss their possible consequences on signaling specificity.
机译:两成分系统(TCS)信号电路响应原核和真核细胞中的环境信号,调节众多细胞过程。这些信号转导电路均基于组氨酸和含有天冬氨酸的传感器激酶和响应调节蛋白模块之间的磷酸基转移。奇怪的是,原核和真核两组分系统的体系结构和组织结构显示出显着的变化,这引发了一个问题,即控制大多数原核TCS的输入响应特异性是否也控制着真核TCS。在这篇综述中,我们对比了原核生物和真核生物的TCS体系结构和信号传导电路,并讨论了它们对信号传导特异性的可能影响。

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