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Computational Analysis of the ESX-1 Region of Mycobacterium tuberculosis: Insights into the Mechanism of Type VII Secretion System

机译:结核分枝杆菌ESX-1区的计算分析:对VII型分泌系统机制的见解。

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摘要

Type VII secretion system (T7SS) is a recent discovery in bacterial secretion systems. First identified in Mycobacterium tuberculosis, this secretion system has later been reported in organisms belonging to the Actinomycetales order and even to distant phyla like Firmicutes. The genome of M. tuberculosis H37Rv contains five gene clusters that have evolved through gene duplication events and include components of the T7SS secretion machinery. These clusters are called ESAT-6 secretion system (ESX) 1 through 5. Out of these, ESX-1 has been the most widely studied region because of its pathological importance. In spite of this, the overall mechanism of protein translocation through ESX-1 secretion machinery is not clearly understood. Specifically, the structural components contributing to the translocation through the mycomembrane have not been characterized yet. In this study, we have carried out a comprehensive in silico analysis of the genes known to be involved in ESX-1 secretion pathway and identified putative proteins having high probability to be associated with this particular pathway. Our study includes analysis of phylogenetic profiles, identification of domains, transmembrane helices, 3D folds, signal peptides and prediction of protein-protein associations. Based on our analysis, we could assign probable novel functions to a few of the ESX-1 components. Additionally, we have identified a few proteins with probable role in the initial activation and formation of mycomembrane translocon of ESX-1 secretion machinery. We also propose a probable working model of T7SS involving ESX-1 secretion pathway.
机译:VII型分泌系统(T7SS)是细菌分泌系统中的最新发现。该分泌系统首先在结核分枝杆菌中发现,后来在放线菌纲甚至什至是坚韧菌等远门的生物体中都有报道。结核分枝杆菌H37Rv的基因组包含五个通过基因复制事件进化的基因簇,并包含T7SS分泌机制的组成部分。这些簇被称为ESAT-6分泌系统(ESX)1至5。其中,ESX-1由于其病理学重要性而成为研究最广泛的地区。尽管如此,尚不清楚通过ESX-1分泌机制进行蛋白质转运的总体机制。具体而言,尚未鉴定有助于通过肌膜易位的结构成分。在这项研究中,我们对已知与ESX-1分泌途径有关的基因进行了全面的计算机分析,并确定了与该特定途径相关的高可能性推定蛋白质。我们的研究包括系统发育谱分析,域鉴定,跨膜螺旋,3D折叠,信号肽和蛋白质-蛋白质结合的预测。根据我们的分析,我们可以为一些ESX-1组件分配可能的新颖功能。此外,我们已经确定了一些可能在ESX-1分泌机器的肌膜转位子的初始激活和形成中起作用的蛋白质。我们还提出了涉及ESX-1分泌途径的T7SS可能的工作模型。

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