Darnell Cynthia L, Wilson Janet M, Tiwari Nitija, Fuentes Ernesto J, Kirby John R
Department of Microbiology, University of Iowa, Iowa City, Iowa, USA.
Division of Select Agents and Toxins, Office of Public Health Preparedness and Response, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
J Bacteriol. 2014 Sep;196(17):3160-8. doi: 10.1128/JB.01866-14. Epub 2014 Jun 23.
Chemosensory systems are complex, highly modified two-component systems (TCS) used by bacteria to control various biological functions ranging from motility to sporulation. Chemosensory systems and TCS both modulate phosphorelays comprised of histidine kinases and response regulators, some of which are single-domain response regulators (SD-RRs) such as CheY. In this study, we have identified and characterized the Che7 chemosensory system of Myxococcus xanthus, a common soil bacterium which displays multicellular development in response to stress. Both genetic and biochemical analyses indicate that the Che7 system regulates development via a direct interaction between the SD-RR CheY7 and a HEAT repeat domain-containing protein, Cpc7. Phosphorylation of the SD-RR affects the interaction with its target, and residues within the α4-β5-α5 fold of the REC domain govern this interaction. The identification of the Cpc7 interaction with CheY7 extends the diversity of known targets for SD-RRs in biological systems.
化学感应系统是复杂的、经过高度修饰的双组分系统(TCS),细菌利用它来控制从运动到孢子形成等各种生物学功能。化学感应系统和双组分系统都能调节由组氨酸激酶和响应调节因子组成的磷酸化信号传递,其中一些是单结构域响应调节因子(SD-RRs),如CheY。在本研究中,我们鉴定并表征了黄色粘球菌的Che7化学感应系统,黄色粘球菌是一种常见的土壤细菌,在应激时会表现出多细胞发育。遗传分析和生化分析均表明,Che7系统通过单结构域响应调节因子CheY7与含HEAT重复结构域的蛋白Cpc7之间的直接相互作用来调节发育。单结构域响应调节因子的磷酸化会影响其与靶标的相互作用,而REC结构域的α4-β5-α5折叠内的残基决定了这种相互作用。Cpc7与CheY7相互作用的鉴定扩展了生物系统中已知的单结构域响应调节因子靶标的多样性。