School of Biological Sciences, Nanyang Technological University, 637551, Singapore.
Bioinformatics Institute (A*STAR), S138671, Singapore.
J Biol Chem. 2019 Sep 13;294(37):13789-13799. doi: 10.1074/jbc.RA119.009009. Epub 2019 Jul 26.
The second messenger cyclic diguanylate (c-di-GMP) plays a prominent role in regulating flagellum-dependent motility in the single-flagellated pathogenic bacterium The c-di-GMP-mediated signaling pathways and mechanisms that control flagellar output remain to be fully unveiled. Studying surface-tethered and free-swimming PAO1 cells, we found that the overexpression of an exogenous diguanylate cyclase (DGC) raises the global cellular c-di-GMP concentration and thereby inhibits flagellar motor switching and decreases motor speed, reducing swimming speed and reversal frequency, respectively. We noted that the inhibiting effect of c-di-GMP on flagellar motor switching, but not motor speed, is exerted through the c-di-GMP-binding adaptor protein MapZ and associated chemotactic pathways. Among the 22 putative c-di-GMP phosphodiesterases, we found that three of them (DipA, NbdA, and RbdA) can significantly inhibit flagellar motor switching and swimming directional reversal in a MapZ-dependent manner. These results disclose a network of c-di-GMP-signaling proteins that regulate chemotactic responses and flagellar motor switching in and establish MapZ as a key signaling hub that integrates inputs from different c-di-GMP-signaling pathways to control flagellar output and bacterial motility. We rationalized these experimental findings by invoking a model that postulates the regulation of flagellar motor switching by subcellular c-di-GMP pools.
第二信使环二鸟苷酸(c-di-GMP)在调节单鞭毛病原菌鞭毛依赖性运动中起着重要作用。c-di-GMP 介导的信号通路和控制鞭毛输出的机制仍有待充分揭示。通过研究固着和自由游动的 PAO1 细胞,我们发现外源二鸟苷酸环化酶(DGC)的过表达会提高细胞内全局 c-di-GMP 浓度,从而抑制鞭毛马达的切换,并降低马达速度,分别降低游泳速度和反转频率。我们注意到,c-di-GMP 对鞭毛马达切换的抑制作用,但不是对马达速度的抑制作用,是通过 c-di-GMP 结合接头蛋白 MapZ 和相关的趋化途径发挥的。在 22 种假定的 c-di-GMP 磷酸二酯酶中,我们发现其中三种(DipA、NbdA 和 RbdA)可以通过 MapZ 依赖性方式显著抑制鞭毛马达的切换和游泳方向的反转。这些结果揭示了一个 c-di-GMP 信号蛋白网络,该网络调节在中的趋化反应和鞭毛马达切换,并确立 MapZ 作为一个关键的信号枢纽,整合来自不同 c-di-GMP 信号通路的输入,以控制鞭毛输出和细菌运动。我们通过调用一个假设,即通过亚细胞 c-di-GMP 池来调节鞭毛马达的切换,合理化了这些实验发现。