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链球菌中的细菌第二信使环二腺苷酸

Bacterial second messenger cyclic di-AMP in streptococci.

作者信息

Wright Michael J, Bai Guangchun

机构信息

Department of Internal Medicine, Dartmouth Hitchcock Medical Center, Lebanon, New Hampshire, USA.

Department of Immunology and Microbial Disease, Albany Medical College, Albany, New York, USA.

出版信息

Mol Microbiol. 2023 Dec;120(6):791-804. doi: 10.1111/mmi.15187. Epub 2023 Oct 28.

Abstract

Cyclic dimeric adenosine monophosphate (c-di-AMP) has been well studied in bacteria, including those of the genus Streptococcus, since the first recognition of this dinucleotide in 2008. Streptococci possess a sole diadenylate cyclase, CdaA, and distinct c-di-AMP phosphodiesterases. Interestingly, cdaA is required for viability of some streptococcal species but not all when streptococci are grown in standard laboratory media. Bacteria of this genus also have distinct c-di-AMP effector proteins, diverse c-di-AMP-signaling pathways, and subsequent biological outcomes. In streptococci, c-di-AMP may influence bacterial growth, morphology, biofilm formation, competence program, drug resistance, and bacterial pathogenesis. c-di-AMP secreted by streptococci has also been shown to interact with the mammalian host and induces immune responses including type I interferon production. In this review, we summarize the reported c-di-AMP networks in seven species of the genus Streptococcus, which cause diverse clinical manifestations, and propose future perspectives to investigate the signaling molecule in these streptococcal pathogens.

摘要

自2008年首次识别出环二聚腺苷单磷酸(c-di-AMP)以来,人们已在包括链球菌属细菌在内的细菌中对其进行了充分研究。链球菌拥有唯一的二腺苷酸环化酶CdaA和独特的c-di-AMP磷酸二酯酶。有趣的是,当链球菌在标准实验室培养基中生长时,cdaA对于某些链球菌物种的生存能力是必需的,但并非对所有物种都如此。该属细菌还具有独特的c-di-AMP效应蛋白、多样的c-di-AMP信号通路以及后续的生物学结果。在链球菌中,c-di-AMP可能影响细菌生长、形态、生物膜形成、感受态程序、耐药性和细菌致病性。链球菌分泌的c-di-AMP也已被证明可与哺乳动物宿主相互作用并诱导包括I型干扰素产生在内的免疫反应。在本综述中,我们总结了已报道的七种链球菌属物种中的c-di-AMP网络,这些物种会引起多种临床表现,并提出了未来研究这些链球菌病原体中信号分子的展望。

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