Recent advances and perspectives in nucleotide second messenger signaling in bacteria.

microLife Pub Date : 2023-01-01 DOI:10.1093/femsml/uqad015
Regine Hengge, Mihaela Pruteanu, Jörg Stülke, Natalia Tschowri, Kürşad Turgay
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引用次数: 6

Abstract

Nucleotide second messengers act as intracellular 'secondary' signals that represent environmental or cellular cues, i.e. the 'primary' signals. As such, they are linking sensory input with regulatory output in all living cells. The amazing physiological versatility, the mechanistic diversity of second messenger synthesis, degradation, and action as well as the high level of integration of second messenger pathways and networks in prokaryotes has only recently become apparent. In these networks, specific second messengers play conserved general roles. Thus, (p)ppGpp coordinates growth and survival in response to nutrient availability and various stresses, while c-di-GMP is the nucleotide signaling molecule to orchestrate bacterial adhesion and multicellularity. c-di-AMP links osmotic balance and metabolism and that it does so even in Archaea may suggest a very early evolutionary origin of second messenger signaling. Many of the enzymes that make or break second messengers show complex sensory domain architectures, which allow multisignal integration. The multiplicity of c-di-GMP-related enzymes in many species has led to the discovery that bacterial cells are even able to use the same freely diffusible second messenger in local signaling pathways that can act in parallel without cross-talking. On the other hand, signaling pathways operating with different nucleotides can intersect in elaborate signaling networks. Apart from the small number of common signaling nucleotides that bacteria use for controlling their cellular "business," diverse nucleotides were recently found to play very specific roles in phage defense. Furthermore, these systems represent the phylogenetic ancestors of cyclic nucleotide-activated immune signaling in eukaryotes.

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细菌中核苷酸第二信使信号的研究进展与展望。
核苷酸第二信使作为细胞内的“次要”信号,代表环境或细胞信号,即“主要”信号。因此,它们将所有活细胞的感觉输入与调节输出联系起来。在原核生物中,第二信使合成、降解和作用的机制多样性以及第二信使通路和网络的高水平整合直到最近才变得明显。在这些网络中,特定的第二信使扮演着保守的一般角色。因此,(p)ppGpp在营养可用性和各种胁迫下协调生长和生存,而c-di-GMP是协调细菌粘附和多细胞性的核苷酸信号分子。c-二- amp连接渗透平衡和代谢,甚至在古细菌中也这样做,这可能表明第二信使信号的进化起源非常早。许多制造或破坏第二信使的酶显示出复杂的感觉结构域结构,从而允许多信号整合。在许多物种中,c-di- gmp相关酶的多样性导致人们发现,细菌细胞甚至能够在局部信号通路中使用相同的自由扩散的第二信使,这些信使可以并行地起作用,而不会产生串扰。另一方面,不同核苷酸的信号通路可以在复杂的信号网络中交叉。除了细菌用于控制其细胞“业务”的少量常见信号核苷酸外,最近发现多种核苷酸在噬菌体防御中起着非常特殊的作用。此外,这些系统代表了真核生物中环核苷酸激活免疫信号的系统发育祖先。
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