Hu Yimin, Cai Quanxin, Tian Shen, Ge Yong, Yuan Zhiming, Hu Xiaomin
Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, 430070, China; University of Chinese Academy of Sciences, Beijing, 100039, China.
Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, 430070, China.
Res Microbiol. 2018 Apr;169(3):177-187. doi: 10.1016/j.resmic.2017.12.006. Epub 2018 Mar 13.
DegS and DegU make up a two component system belonging to a class of signal transduction systems that play important roles in a broad range of bacterial responses to the environment. However, little study has been done to explore the physiological functions of DegS-DegU in mosquitocidal Lysinibacillus sphaericus. In this study, it was found that deletion of degU or degS-degU inhibited the swarming motility, biofilm formation, sporulation and binary toxin production through regulating the related genes, and phosphorylation was necessary for the functions of DegU. Based on the findings, a regulation network mediated by DegU was delineated. Both DegU-pi and Spo0A-pi positively regulates genes which are linked with the transition from stage Ⅱ to the end of the sporulation process and also influences the production of binary toxins via regulation on sigE. Both DegU-pi and Spo0A-pi negatively regulate abrB/sinR and influence the biofilm formation. DegU-pi can positively regulate the motility via the regulation on sigD. Whether the regulations are directly or indirectly need to be explored. Moreover, Spo0A-pi may indirectly regulate the swarming motility through negatively regulating DegU. It was concluded that DegU is a global transcriptional regulator on cell swarming motility, biofilm formation, sporulation and virulence in L. sphaericus.
DegS和DegU构成了一个双组分系统,属于一类信号转导系统,在细菌对环境的广泛应答中发挥重要作用。然而,关于DegS-DegU在杀蚊球形赖氨酸芽孢杆菌中的生理功能研究甚少。在本研究中,发现缺失degU或degS-degU会通过调控相关基因抑制群体运动性、生物膜形成、芽孢形成和二元毒素产生,并且磷酸化对于DegU的功能是必需的。基于这些发现,描绘了一个由DegU介导的调控网络。DegU-pi和Spo0A-pi均正向调控与芽孢形成过程从Ⅱ期到末期转变相关的基因,并且还通过对sigE的调控影响二元毒素的产生。DegU-pi和Spo0A-pi均负向调控abrB/sinR并影响生物膜形成。DegU-pi可通过对sigD的调控正向调控运动性。这些调控是直接还是间接的尚需探究。此外,Spo0A-pi可能通过负向调控DegU间接调控群体运动性。得出的结论是,DegU是球形赖氨酸芽孢杆菌中细胞群体运动性、生物膜形成、芽孢形成和毒力的全局转录调节因子。