Focal area of Infection Biology, Biozentrum, University of Basel, 4056 Basel, Switzerland.
Focal area of Structural Biology and Biophysics, Biozentrum, University of Basel, 4056 Basel, Switzerland.
Nature. 2015 Jul 9;523(7559):236-9. doi: 10.1038/nature14473. Epub 2015 May 6.
Fundamental to all living organisms is the capacity to coordinate cell division and cell differentiation to generate appropriate numbers of specialized cells. Whereas eukaryotes use cyclins and cyclin-dependent kinases to balance division with cell fate decisions, equivalent regulatory systems have not been described in bacteria. Moreover, the mechanisms used by bacteria to tune division in line with developmental programs are poorly understood. Here we show that Caulobacter crescentus, a bacterium with an asymmetric division cycle, uses oscillating levels of the second messenger cyclic diguanylate (c-di-GMP) to drive its cell cycle. We demonstrate that c-di-GMP directly binds to the essential cell cycle kinase CckA to inhibit kinase activity and stimulate phosphatase activity. An upshift of c-di-GMP during the G1-S transition switches CckA from the kinase to the phosphatase mode, thereby allowing replication initiation and cell cycle progression. Finally, we show that during division, c-di-GMP imposes spatial control on CckA to install the replication asymmetry of future daughter cells. These studies reveal c-di-GMP to be a cyclin-like molecule in bacteria that coordinates chromosome replication with cell morphogenesis in Caulobacter. The observation that c-di-GMP-mediated control is conserved in the plant pathogen Agrobacterium tumefaciens suggests a general mechanism through which this global regulator of bacterial virulence and persistence coordinates behaviour and cell proliferation.
所有生物体的基本特征是协调细胞分裂和细胞分化,以产生适当数量的专门细胞。虽然真核生物使用细胞周期蛋白和细胞周期蛋白依赖性激酶来平衡分裂与细胞命运决定,但在细菌中尚未描述等效的调节系统。此外,细菌用于根据发育程序调整分裂的机制还知之甚少。在这里,我们表明,具有不对称分裂周期的新月柄杆菌利用第二信使环二鸟苷酸 (c-di-GMP) 的波动水平来驱动其细胞周期。我们证明 c-di-GMP 直接与必需的细胞周期激酶 CckA 结合,以抑制激酶活性并刺激磷酸酶活性。在 G1-S 转换期间 c-di-GMP 的上升将 CckA 从激酶转换为磷酸酶模式,从而允许复制起始和细胞周期进程。最后,我们表明,在分裂过程中,c-di-GMP 对 CckA 施加空间控制,以安装未来子细胞的复制不对称性。这些研究表明 c-di-GMP 是细菌中的一种细胞周期样分子,它在新月柄杆菌中协调染色体复制与细胞形态发生。观察到 c-di-GMP 介导的控制在植物病原体根癌农杆菌中保守,这表明了一种普遍的机制,通过该机制,这种细菌毒力和持久性的全局调节剂协调行为和细胞增殖。