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多态性毒素及其免疫蛋白:多样性、进化和传递机制。

Polymorphic Toxins and Their Immunity Proteins: Diversity, Evolution, and Mechanisms of Delivery.

机构信息

Department of Molecular, Cellular and Developmental Biology, University of California, Santa Barbara, California 93106, USA; email:

Biomolecular Science and Engineering Program, University of California, Santa Barbara, California 93106, USA.

出版信息

Annu Rev Microbiol. 2020 Sep 8;74:497-520. doi: 10.1146/annurev-micro-020518-115638. Epub 2020 Jul 17.

Abstract

All bacteria must compete for growth niches and other limited environmental resources. These existential battles are waged at several levels, but one common strategy entails the transfer of growth-inhibitory protein toxins between competing cells. These antibacterial effectors are invariably encoded with immunity proteins that protect cells from intoxication by neighboring siblings. Several effector classes have been described, each designed to breach the cell envelope of target bacteria. Although effector architectures and export pathways tend to be clade specific, phylogenetically distant species often deploy closely related toxin domains. Thus, diverse competition systems are linked through a common reservoir of toxin-immunity pairs that is shared via horizontal gene transfer. These toxin-immunity protein pairs are extraordinarily diverse in sequence, and this polymorphism underpins an important mechanism of self/nonself discrimination in bacteria. This review focuses on the structures, functions, and delivery mechanisms of polymorphic toxin effectors that mediate bacterial competition.

摘要

所有细菌都必须争夺生长小生境和其他有限的环境资源。这些生存斗争在几个层面上展开,但一种常见的策略是在竞争细胞之间转移生长抑制蛋白毒素。这些抗菌效应物总是带有免疫蛋白,这些免疫蛋白可以保护细胞免受邻近细胞的毒害。已经描述了几种效应物类别,每种效应物都旨在突破靶细菌的细胞膜。尽管效应物结构和外排途径往往具有特定的进化枝特异性,但系统发育上相距甚远的物种通常会利用密切相关的毒素结构域。因此,不同的竞争系统通过一个共同的毒素-免疫对库联系在一起,这些毒素-免疫对通过水平基因转移共享。这些毒素-免疫蛋白对在序列上非常多样化,这种多态性为细菌的自我/非我识别提供了一个重要的机制。这篇综述重点介绍了介导细菌竞争的多态性毒素效应物的结构、功能和传递机制。

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