Enomoto Gen, Wallner Thomas, Wilde Annegret
Institute of Biology III, University of Freiburg, 79104 Freiburg, Germany.
Microlife. 2023 Apr 12;4:uqad019. doi: 10.1093/femsml/uqad019. eCollection 2023.
Nucleotide-derived signalling molecules control a wide range of cellular processes in all organisms. The bacteria-specific cyclic dinucleotide c-di-GMP plays a crucial role in regulating motility-to-sessility transitions, cell cycle progression, and virulence. Cyanobacteria are phototrophic prokaryotes that perform oxygenic photosynthesis and are widespread microorganisms that colonize almost all habitats on Earth. In contrast to photosynthetic processes that are well understood, the behavioural responses of cyanobacteria have rarely been studied in detail. Analyses of cyanobacterial genomes have revealed that they encode a large number of proteins that are potentially involved in the synthesis and degradation of c-di-GMP. Recent studies have demonstrated that c-di-GMP coordinates many different aspects of the cyanobacterial lifestyle, mostly in a light-dependent manner. In this review, we focus on the current knowledge of light-regulated c-di-GMP signalling systems in cyanobacteria. Specifically, we highlight the progress made in understanding the most prominent behavioural responses of the model cyanobacterial strains and sp. PCC 6803. We discuss why and how cyanobacteria extract crucial information from their light environment to regulate ecophysiologically important cellular responses. Finally, we emphasize the questions that remain to be addressed.
核苷酸衍生的信号分子控制着所有生物体中的广泛细胞过程。细菌特有的环二核苷酸c-di-GMP在调节运动性向固着性转变、细胞周期进程和毒力方面起着关键作用。蓝细菌是进行产氧光合作用的光合原核生物,是广泛分布的微生物,几乎在地球上所有栖息地都有定殖。与人们充分了解的光合过程不同,蓝细菌的行为反应很少被详细研究。对蓝细菌基因组的分析表明,它们编码大量可能参与c-di-GMP合成和降解的蛋白质。最近的研究表明,c-di-GMP协调蓝细菌生活方式的许多不同方面,大多以光依赖的方式。在这篇综述中,我们聚焦于蓝细菌中光调节的c-di-GMP信号系统的现有知识。具体而言,我们突出了在理解模式蓝细菌菌株和聚球藻属PCC 6803最显著行为反应方面取得的进展。我们讨论了蓝细菌为何以及如何从其光环境中提取关键信息以调节具有重要生态生理学意义的细胞反应。最后我们强调了仍有待解决的问题。