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假单胞菌属 VI 型分泌系统的基因组分析:揭示新的簇和潜在效应子。

Genomic analysis of the type VI secretion systems in Pseudomonas spp.: novel clusters and putative effectors uncovered.

机构信息

BIOMERIT Research Centre, Department of Microbiology, University College Cork, Cork, Ireland.

Department of Microbiology, University College Cork, Cork, Ireland.

出版信息

Microbiology (Reading). 2011 Jun;157(Pt 6):1726-1739. doi: 10.1099/mic.0.048645-0. Epub 2011 Apr 7.

Abstract

Bacteria encode multiple protein secretion systems that are crucial for interaction with the environment and with hosts. In recent years, attention has focused on type VI secretion systems (T6SSs), which are specialized transporters widely encoded in Proteobacteria. The myriad of processes associated with these secretion systems could be explained by subclasses of T6SS, each involved in specialized functions. To assess diversity and predict function associated with different T6SSs, comparative genomic analysis of 34 Pseudomonas genomes was performed. This identified 70 T6SSs, with at least one locus in every strain, except for Pseudomonas stutzeri A1501. By comparing 11 core genes of the T6SS, it was possible to identify five main Pseudomonas phylogenetic clusters, with strains typically carrying T6SSs from more than one clade. In addition, most strains encode additional vgrG and hcp genes, which encode extracellular structural components of the secretion apparatus. Using a combination of phylogenetic and meta-analysis of transcriptome datasets it was possible to associate specific subsets of VgrG and Hcp proteins with each Pseudomonas T6SS clade. Moreover, a closer examination of the genomic context of vgrG genes in multiple strains highlights a number of additional genes associated with these regions. It is proposed that these genes may play a role in secretion or alternatively could be new T6S effectors.

摘要

细菌编码多种蛋白质分泌系统,这些系统对于与环境和宿主的相互作用至关重要。近年来,人们越来越关注一种称为 VI 型分泌系统(T6SS)的特殊转运器,它广泛存在于变形菌中。这些分泌系统相关的多种过程可以用 T6SS 的子类来解释,每个子类都涉及特定的功能。为了评估不同 T6SS 的多样性和预测其功能,对 34 个假单胞菌基因组进行了比较基因组分析。结果在除了 Pseudomonas stutzeri A1501 之外的每一个菌株中都发现了至少一个 T6SS 基因座,共鉴定出 70 个 T6SS。通过比较 T6SS 的 11 个核心基因,可以将假单胞菌分为五个主要的系统发育簇,大多数菌株携带来自不止一个系统发育簇的 T6SS。此外,大多数菌株还编码额外的 vgrG 和 hcp 基因,这些基因编码分泌装置的细胞外结构成分。通过系统发育和转录组数据集的元分析相结合,有可能将特定的 VgrG 和 Hcp 蛋白子集与每个假单胞菌 T6SS 簇相关联。此外,对多个菌株中 vgrG 基因的基因组环境进行更仔细的检查,突出了与这些区域相关的许多其他基因。据推测,这些基因可能在分泌过程中发挥作用,或者可能是新的 T6S 效应子。

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