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一种类似蓝藻趋化性的系统通过两种拮抗反应调节因子的磷酸化来控制趋光定向。

A cyanobacterial chemotaxis-like system controls phototactic orientation via phosphorylation of two antagonistic response regulators.

作者信息

Han Yu, Hammerl Jonas, Flemming Felicitas E, Schuergers Nils, Wilde Annegret

机构信息

Molecular Genetics, Institute of Biology III, Schänzlestraße 1, University of Freiburg, 79104 Freiburg, Germany.

Spemann Graduate School of Biology and Medicine (SGBM), Albertstr. 19A, University of Freiburg, Germany.

出版信息

Microlife. 2024 May 27;5:uqae012. doi: 10.1093/femsml/uqae012. eCollection 2024.

Abstract

Photosynthetic cyanobacteria exhibit phototaxis, utilizing type IV pili (T4P) to navigate either toward or away from a light source. The Tax1 system is a chemotaxis-like signal transduction pathway that controls the switch in cell polarity, which is crucial for positive phototaxis in sp. PCC 6803. The system consists of the blue/green light sensor PixJ, which controls the histidine kinase PixL and two CheY-like response regulators, PixG and PixH. However, the molecular mechanism by which Tax1 regulates T4P activity and polarity is poorly understood. Here, we investigated the phosphotransfer between PixL and its cognate response regulators and analyzed the localization and function of wild-type and phosphorylation-deficient PixG and PixH during phototaxis. We found that both PixG and PixH are phosphorylated by PixL but have different roles in phototaxis regulation. Only phosphorylated PixG interacts with the T4P motor protein PilB1 and localizes to the leading cell pole under directional light, thereby promoting positive phototaxis. In contrast, PixH is a negative regulator of PixG phosphorylation and inhibits positive phototaxis. We also demonstrated that the C-terminal receiver domain of PixL is essential for positive phototaxis, and modulates the kinase activity of PixL. Our findings reveal the molecular basis of positive phototaxis regulation by the Tax1 system and provide insights into the division of labor between PatA-type and CheY-like response regulators in cyanobacterial chemotaxis-like systems. Furthermore, these findings highlight similarities in the regulation of movement direction during twitching motility in phototactic and chemotactic bacteria.

摘要

光合蓝细菌表现出趋光性,利用IV型菌毛(T4P)朝着或远离光源游动。Tax1系统是一种类似趋化作用的信号转导途径,它控制细胞极性的转换,这对集胞藻PCC 6803中的正向趋光性至关重要。该系统由蓝/绿光传感器PixJ组成,它控制组氨酸激酶PixL以及两个类似CheY的响应调节因子PixG和PixH。然而,Tax1调节T4P活性和极性的分子机制仍知之甚少。在这里,我们研究了PixL与其同源响应调节因子之间的磷酸转移,并分析了野生型和磷酸化缺陷型PixG和PixH在趋光性过程中的定位和功能。我们发现PixG和PixH都被PixL磷酸化,但在趋光性调节中具有不同的作用。只有磷酸化的PixG与T4P运动蛋白PilB1相互作用,并在定向光下定位到细胞的前端,从而促进正向趋光性。相比之下,PixH是PixG磷酸化的负调节因子,并抑制正向趋光性。我们还证明了PixL的C末端接收结构域对正向趋光性至关重要,并调节PixL的激酶活性。我们的研究结果揭示了Tax1系统对正向趋光性调节的分子基础,并为蓝细菌类似趋化作用系统中PatA型和类似CheY的响应调节因子之间的分工提供了见解。此外,这些发现突出了趋光性细菌和趋化性细菌在抽动运动过程中运动方向调节的相似性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3496/11181946/1245bcbacb7a/uqae012fig1.jpg

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