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首页> 外文期刊>BMC Genomics >Recombination in pe/ppe genes contributes to genetic variation in Mycobacterium tuberculosis lineages
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Recombination in pe/ppe genes contributes to genetic variation in Mycobacterium tuberculosis lineages

机译:pe / ppe基因的重组有助于结核分枝杆菌谱系的遗传变异

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Background Approximately 10?% of the Mycobacterium tuberculosis genome is made up of two families of genes that are poorly characterized due to their high GC content and highly repetitive nature. The PE and PPE families are typified by their highly conserved N-terminal domains that incorporate proline-glutamate (PE) and proline-proline-glutamate (PPE) signature motifs. They are hypothesised to be important virulence factors involved with host-pathogen interactions, but their high genetic variability and complexity of analysis means they are typically disregarded in genome studies. Results To elucidate the structure of these genes, 518 genomes from a diverse international collection of clinical isolates were de novo assembled. A further 21 reference M. tuberculosis complex genomes and long read sequence data were used to validate the approach. SNP analysis revealed that variation in the majority of the 168 pe/ppe genes studied was consistent with lineage. Several recombination hotspots were identified, notably pe_pgrs3 and pe_pgrs17 . Evidence of positive selection was revealed in 65 pe/ppe genes, including epitopes potentially binding to major histocompatibility complex molecules. Conclusions This, the first comprehensive study of the pe and ppe genes, provides important insight into M. tuberculosis diversity and has significant implications for vaccine development.
机译:背景技术结核分枝杆菌基因组中约10%的基因由两个家族的基因组成,由于其高GC含量和高度重复性,这些家族的特征很差。 PE和PPE家族的典型代表是它们的高度保守的N末端结构域,其中包含脯氨酸-谷氨酸(PE)和脯氨酸-脯氨酸-谷氨酸(PPE)签名基元。假设它们是与宿主-病原体相互作用有关的重要毒力因子,但是它们的高遗传变异性和分析的复杂性意味着它们通常在基因组研究中被忽略。结果为了阐明这些基因的结构,从头开始组装了来自国际不同临床分离株的518个基因组。另外21个参考结核分枝杆菌复杂基因组和较长的阅读序列数据被用于验证该方法。 SNP分析显示,研究的大多数168 pe / ppe基因的变异与谱系一致。确定了几个重组热点,特别是pe_pgrs3和pe_pgrs17。在65 pe / ppe基因中发现了阳性选择的证据,包括可能与主要组织相容性复合物分子结合的表位。结论这是对pe和ppe基因的首次全面研究,为结核分枝杆菌的多样性提供了重要的见识,并对疫苗的开发具有重要意义。

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