首页> 美国卫生研究院文献>Nucleic Acids Research >Comparative genomic and proteomic analyses of PE/PPE multigene family of Mycobacterium tuberculosis H37Rv and H37Ra reveal novel and interesting differences with implications in virulence
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Comparative genomic and proteomic analyses of PE/PPE multigene family of Mycobacterium tuberculosis H37Rv and H37Ra reveal novel and interesting differences with implications in virulence

机译:结核分枝杆菌H37Rv和H37Ra的PE / PPE多基因家族的基因组和蛋白质组学比较分析揭示了新的和有趣的差异对毒力有影响

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摘要

Tuberculosis, caused by Mycobacterium tuberculosis, remains a leading infectious disease taking one human life every 15 s globally. The two well-characterized strains H37Rv and H37Ra, derived from the same parental strain M. tuberculosis H37, show dramatically different pathogenic phenotypes. PE/PPE gene family, comprising of 176 open reading frames and present exclusively in genus Mycobacterium, accounts for ∼10% of the M. tuberculosis genome. Our comprehensive in silico analyses of PE/PPE family of H37Ra and virulent H37Rv strains revealed genetic differences between these strains in terms of several single nucleotide variations and InDels and these manifested in changes in physico-chemical properties, phosphorylation sites, and protein: protein interacting domains of the corresponding proteomes. Similar comparisons using the 13 sigma factor genes, 36 members of the mammalian cell entry family, 13 mycobacterial membrane protein large family members and 11 two-component signal transduction systems along with 5 orphaned response regulators and 2 orphaned sensor kinases failed to reveal very significant difference between H37Rv and H37Ra, reinforcing the importance of PE/PPE genes. Many of these changes between H37Rv and H37Ra can be correlated to differences in pathogenesis and virulence of the two strains.
机译:由结核分枝杆菌引起的结核病仍然是一种主要的传染性疾病,全球每15秒有生命死亡。来自相同的亲本菌株结核分枝杆菌H37的两个充分表征的菌株H37Rv和H37Ra显示出显着不同的致病表型。 PE / PPE基因家族由176个开放阅读框组成,仅存在于分枝杆菌属中,约占结核分枝杆菌基因组的10%。我们对H37Ra和强毒H37Rv菌株的PE / PPE家族进行了全面的计算机分析,揭示了这些菌株之间在几个单核苷酸变异和InDel方面的遗传差异,这些差异表现为物理化学性质,磷酸化位点和蛋白质:蛋白质相互作用的变化相应蛋白质组的域。使用13个sigma因子基因,36个哺乳动物细胞进入家族成员,13个分枝杆菌膜蛋白大家族成员和11个双组分信号转导系统以及5个孤立反应调节剂和2个孤立传感器激酶的相似比较未能显示出非常显着的差异在H37Rv和H37Ra之间,增强了PE / PPE基因的重要性。 H37Rv和H37Ra之间的许多这些变化都可能与这两种菌株的发病机理和毒力差异有关。

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