Surface exclusion of IncC conjugative plasmids and their relatives.

IF 4 2区 生物学 Q1 GENETICS & HEREDITY
PLoS Genetics Pub Date : 2024-10-09 eCollection Date: 2024-10-01 DOI:10.1371/journal.pgen.1011442
Nicolas Rivard, Malika Humbert, Kévin T Huguet, Aurélien Fauconnier, César Pérez Bucio, Eve Quirion, Vincent Burrus
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引用次数: 0

Abstract

The phenomenon of exclusion allows conjugative plasmids to selectively impede the entry of identical or related elements into their host cell to prevent the resulting instability. Entry exclusion blocks DNA translocation into the recipient cell, whereas surface exclusion destabilizes the mating pair. IncC conjugative plasmids largely contribute to the dissemination of antibiotic-resistance genes in Gammaproteobacteria. IncC plasmids are known to exert exclusion against their relatives, including IncC and IncA plasmids, yet the entry exclusion factor eexC alone does not account for the totality of the exclusion phenotype. In this study, a transposon-directed insertion sequencing approach identified sfx as necessary and sufficient for the remaining exclusion phenotype. Sfx is an exclusion factor unrelated to the ones described to date. A cell fractionation assay localized Sfx in the outer membrane. Reverse transcription PCR and beta-galactosidase experiments showed that sfx is expressed constitutively at a higher level than eexC. A search in Gammaproteobacteria genomes identified Sfx homologs encoded by IncC, IncA and related, untyped conjugative plasmids and an uncharacterized family of integrative and mobilizable elements that likely rely on IncC plasmids for their mobility. Mating assays demonstrated that sfx is not required in the donor for exclusion, ruling out Sfx as the exclusion target. Instead, complementation assays revealed that the putative adhesin TraN in the donor mediates the specificity of surface exclusion. Mating assays with TraN homologs from related untyped plasmids from Aeromonas spp. and Photobacterium damselae identified two surface exclusion groups, with each Sfx being specific of TraN homologs from the same group. Together, these results allow us to better understand the apparent incompatibility between IncA and IncC plasmids and to propose a mechanistic model for surface exclusion mediated by Sfx in IncC plasmids and related elements, with implications for the rampant dissemination of antibiotic resistance.

IncC 共轭质粒及其亲缘体的表面排阻作用
排斥现象允许共轭质粒选择性地阻止相同或相关的元素进入宿主细胞,以防止由此产生的不稳定性。入口排斥会阻止 DNA 转位进入受体细胞,而表面排斥则会破坏配对的稳定性。IncC 共轭质粒在很大程度上促成了抗生素耐药基因在加膜蛋白杆菌中的传播。众所周知,IncC 质粒对其亲缘种(包括 IncC 和 IncA 质粒)具有排斥作用,但仅靠入口排斥因子 eexC 并不能解释排斥表型的全部。在这项研究中,转座子定向插入测序方法确定了 sfx 对于剩余的排斥表型是必要且充分的。Sfx 是一种与迄今描述的排斥因子无关的排斥因子。细胞分馏测定将 Sfx 定位于外膜。反转录 PCR 和 beta-半乳糖苷酶实验表明,sfx 的组成型表达水平高于 eexC。在伽马蛋白细菌基因组中搜索发现了由 IncC、IncA 和相关的非类型共轭质粒编码的 Sfx 同源物,以及一个未表征的整合和可移动元件家族,它们的移动性可能依赖于 IncC 质粒。交配试验表明,供体中不需要 sfx 进行排异,因此排除了 Sfx 作为排异目标的可能性。相反,互补测定显示,供体中的推定粘附素 TraN 介导了表面排斥的特异性。与来自气单胞菌属(Aeromonas spp.)和大疱光杆菌(Photobacterium damselae)的相关未分型质粒中的 TraN 同源物进行的交配试验确定了两个表面排斥组,每个 Sfx 对来自同一组的 TraN 同源物具有特异性。这些结果使我们能够更好地理解 IncA 和 IncC 质粒之间明显的不相容性,并提出了一个由 IncC 质粒和相关元件中的 Sfx 介导的表面排斥机理模型,该模型对抗生素耐药性的肆意传播具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PLoS Genetics
PLoS Genetics GENETICS & HEREDITY-
自引率
2.20%
发文量
438
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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