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Interaction Analysis of a Two-Component System Using Nanodiscs

机译:使用纳米圆盘的两组分系统的相互作用分析

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摘要

Two-component systems are the major means by which bacteria couple adaptation to environmental changes. All utilize a phosphorylation cascade from a histidine kinase to a response regulator, and some also employ an accessory protein. The system-wide signaling fidelity of two-component systems is based on preferential binding between the signaling proteins. However, information on the interaction kinetics between membrane embedded histidine kinase and its partner proteins is lacking. Here, we report the first analysis of the interactions between the full-length membrane-bound histidine kinase CpxA, which was reconstituted in nanodiscs, and its cognate response regulator CpxR and accessory protein CpxP. Using surface plasmon resonance spectroscopy in combination with interaction map analysis, the affinity of membrane-embedded CpxA for CpxR was quantified, and found to increase by tenfold in the presence of ATP, suggesting that a considerable portion of phosphorylated CpxR might be stably associated with CpxA in vivo. Using microscale thermophoresis, the affinity between CpxA in nanodiscs and CpxP was determined to be substantially lower than that between CpxA and CpxR. Taken together, the quantitative interaction data extend our understanding of the signal transduction mechanism used by two-component systems.
机译:两组分系统是细菌适应环境变化的主要手段。它们都利用从组氨酸激酶到应答调节剂的磷酸化级联反应,有些还利用辅助蛋白。两组分系统的全系统信号保真度基于信号蛋白之间的优先结合。但是,缺乏有关膜包埋的组氨酸激酶与其伴侣蛋白之间相互作用动力学的信息。在这里,我们报告了在纳米圆盘中重组的全长膜结合组氨酸激酶CpxA与其同源响应调节剂CpxR和辅助蛋白CpxP之间的相互作用的首次分析。使用表面等离子体共振光谱结合相互作用图分析,膜嵌入的CpxA对CpxR的亲和力被定量,发现在ATP存在下增加了十倍,这表明磷酸化的CpxR的相当一部分可能与CpxA稳定地缔合。体内。使用微尺度热泳,纳米圆盘中的CpxA和CpxP之间的亲和力被确定为远低于CpxA和CpxR之间的亲和力。总之,定量相互作用数据扩展了我们对两组分系统使用的信号转导机制的理解。

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