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古菌中假定的基于核苷酸的第二信使。

Putative nucleotide-based second messengers in archaea.

作者信息

van der Does Chris, Braun Frank, Ren Hongcheng, Albers Sonja-Verena

机构信息

Molecular Biology of Archaea, Institute of Biology, University of Freiburg, 79104 Freiburg, Germany.

出版信息

Microlife. 2023 Jun 5;4:uqad027. doi: 10.1093/femsml/uqad027. eCollection 2023.

Abstract

Second messengers transfer signals from changing intra- and extracellular conditions to a cellular response. Over the last few decades, several nucleotide-based second messengers have been identified and characterized in especially bacteria and eukaryotes. Also in archaea, several nucleotide-based second messengers have been identified. This review will summarize our understanding of nucleotide-based second messengers in archaea. For some of the nucleotide-based second messengers, like cyclic di-AMP and cyclic oligoadenylates, their roles in archaea have become clear. Cyclic di-AMP plays a similar role in osmoregulation in euryarchaea as in bacteria, and cyclic oligoadenylates are important in the Type III CRISPR-Cas response to activate CRISPR ancillary proteins involved in antiviral defense. Other putative nucleotide-based second messengers, like 3',5'- and 2',3'-cyclic mononucleotides and adenine dinucleotides, have been identified in archaea, but their synthesis and degradation pathways, as well as their functions as secondary messengers, still remain to be demonstrated. In contrast, 3'-3'-cGAMP has not yet been identified in archaea, but the enzymes required to synthesize 3'-3'-cGAMP have been found in several euryarchaeotes. Finally, the widely distributed bacterial second messengers, cyclic diguanosine monophosphate and guanosine (penta-)/tetraphosphate, do not appear to be present in archaea.

摘要

第二信使将细胞内和细胞外环境变化产生的信号传递至细胞反应。在过去几十年里,已经在细菌和真核生物中鉴定并表征了几种基于核苷酸的第二信使。在古菌中也鉴定出了几种基于核苷酸的第二信使。本综述将总结我们对古菌中基于核苷酸的第二信使的理解。对于一些基于核苷酸的第二信使,如环二腺苷酸和环寡腺苷酸,它们在古菌中的作用已经明确。环二腺苷酸在广古菌的渗透压调节中发挥着与细菌中类似的作用,环寡腺苷酸在III型CRISPR-Cas反应中对激活参与抗病毒防御的CRISPR辅助蛋白很重要。在古菌中还鉴定出了其他假定的基于核苷酸的第二信使,如3',5'-和2',3'-环单核苷酸以及腺嘌呤二核苷酸,但它们的合成和降解途径以及作为第二信使的功能仍有待证明。相比之下,在古菌中尚未鉴定出3'-3'-cGAMP,但在几种广古菌中发现了合成3'-3'-cGAMP所需的酶。最后,广泛分布于细菌中的第二信使环二鸟苷酸和鸟苷(五)/四磷酸似乎不存在于古菌中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a724/10249747/5c2b3340c5ce/uqad027fig1.jpg

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