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化学感受途径的串扰调节趋化作用和生物膜形成。

Cross Talk between Chemosensory Pathways That Modulate Chemotaxis and Biofilm Formation.

机构信息

State Key Laboratory of Microbial Resources and Environmental Microbiology, Research Center, Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

mBio. 2019 Feb 26;10(1):e02876-18. doi: 10.1128/mBio.02876-18.

Abstract

Complex chemosensory systems control multiple biological functions in bacteria, such as chemotaxis, gene regulation, and cell cycle progression. Many species contain more than one chemosensory system per genome, but little is known about their potential interplay. In this study, we reveal cross talk between two chemosensory pathways that modulate chemotaxis and biofilm formation in We demonstrate that some chemoreceptors that govern chemotaxis also contribute to biofilm formation and these chemoreceptors can physically interact with components of both pathways. Finally, we show that the chemotaxis histidine kinase CheA can phosphorylate not only its cognate response regulator CheY but also one of the response regulators from the pathway mediating biofilm formation, FlmD. The phosphoryl group transfer from CheA to CheY is much faster than that from CheA to FlmD, which is consistent with chemotaxis being a fast response and biofilm formation being a much slower developmental process. We propose that cross talk between chemosensory pathways may play a role in coordination of complex behaviors in bacteria. In many bacteria, two or more homologous chemosensory pathways control several cellular functions, such as motility and gene regulation, in response to changes in the cell's microenvironment. Cross talk between signal transduction systems is poorly understood; while generally it is considered to be undesired, in some instances it might be beneficial for coregulation of complex behaviors. We demonstrate that several receptors from the pathway controlling motility can physically interact with downstream components of the pathway controlling biofilm formation. We further show that a kinase from the pathway controlling motility can also phosphorylate a response regulator from the pathway controlling biofilm formation. We propose that cross talk between two chemosensory pathways might be involved in coordination of two types of cell behavior-chemotaxis and biofilm formation.

摘要

复杂的化学感觉系统控制着细菌的多种生物学功能,如趋化性、基因调控和细胞周期进程。许多物种的基因组中含有不止一种化学感觉系统,但它们之间的潜在相互作用却知之甚少。在这项研究中,我们揭示了两种化学感觉途径之间的串扰,这种串扰调节了细菌的趋化性和生物膜形成。我们证明了一些控制趋化性的化学感受器也有助于生物膜的形成,并且这些化学感受器可以与两种途径的成分进行物理相互作用。最后,我们表明趋化性组氨酸激酶 CheA 不仅可以磷酸化其同源的响应调节剂 CheY,还可以磷酸化介导生物膜形成途径中的一个响应调节剂 FlmD。CheA 向 CheY 的磷酸基团转移速度比 CheA 向 FlmD 的转移速度快得多,这与趋化性是一种快速反应,而生物膜形成是一种更慢的发育过程一致。我们提出,化学感觉途径之间的串扰可能在细菌复杂行为的协调中发挥作用。在许多细菌中,两个或更多同源的化学感觉途径控制着几种细胞功能,如运动和基因调控,以响应细胞微环境的变化。信号转导系统之间的串扰知之甚少;虽然一般认为它是不希望的,但在某些情况下,它可能有助于对复杂行为的核心调控。我们证明了控制运动的途径中的几个受体可以与控制生物膜形成的途径的下游成分进行物理相互作用。我们进一步表明,控制运动的途径中的一种激酶也可以磷酸化控制生物膜形成的途径中的一个响应调节剂。我们提出,两种化学感觉途径之间的串扰可能参与了两种细胞行为——趋化性和生物膜形成的协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a87f/6391922/10845d8a0171/mBio.02876-18-f0001.jpg

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