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植物-细菌相互作用中的细菌杂合组氨酸激酶

Bacterial hybrid histidine kinases in plant-bacteria interactions.

作者信息

Borland Stéphanie, Prigent-Combaret Claire, Wisniewski-Dyé Florence

机构信息

Université de Lyon, Université Lyon 1, Ecologie Microbienne, CNRS UMR5557, INRA UMR1418, Villeurbanne, France.

出版信息

Microbiology (Reading). 2016 Oct;162(10):1715-1734. doi: 10.1099/mic.0.000370. Epub 2016 Sep 8.

Abstract

Two-component signal transduction systems are essential for many bacteria to maintain homeostasis and adapt to environmental changes. Two-component signal transduction systems typically involve a membrane-bound histidine kinase that senses stimuli, autophosphorylates in the transmitter region and then transfers the phosphoryl group to the receiver domain of a cytoplasmic response regulator that mediates appropriate changes in bacterial physiology. Although usually found on distinct proteins, the transmitter and receiver modules are sometimes fused into a so-called hybrid histidine kinase (HyHK). Such structure results in multiple phosphate transfers that are believed to provide extra-fine-tuning mechanisms and more regulatory checkpoints than classical phosphotransfers. HyHK-based regulation may be crucial for finely tuning gene expression in a heterogeneous environment such as the rhizosphere, where intricate plant-bacteria interactions occur. In this review, we focus on roles fulfilled by bacterial HyHKs in plant-associated bacteria, providing recent findings on the mechanistic of their signalling properties. Recent insights into understanding additive regulatory properties fulfilled by the tethered receiver domain of HyHKs are also addressed.

摘要

双组分信号转导系统对于许多细菌维持体内平衡和适应环境变化至关重要。双组分信号转导系统通常涉及一种膜结合组氨酸激酶,该激酶感知刺激,在发送器区域进行自磷酸化,然后将磷酸基团转移到细胞质响应调节因子的接收器结构域,该调节因子介导细菌生理的适当变化。虽然通常存在于不同的蛋白质上,但发送器和接收器模块有时会融合成所谓的杂合组氨酸激酶(HyHK)。这种结构导致多次磷酸转移,据信这种转移比经典的磷酸转移提供了更精细的调节机制和更多的调节控制点。基于HyHK的调节对于在诸如根际这样的异质环境中精细调节基因表达可能至关重要,在根际会发生复杂的植物 - 细菌相互作用。在本综述中,我们重点关注细菌HyHKs在植物相关细菌中所起的作用,提供有关其信号特性机制的最新发现。还讨论了对HyHKs的拴系接收器结构域所具有的附加调节特性的最新见解。

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