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Comparative Genomic Analysis of Mycobacterium tuberculosis Drug Resistant Strains from Russia

机译:俄罗斯结核分枝杆菌耐药菌株的比较基因组分析

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摘要

Tuberculosis caused by multidrug-resistant (MDR) and extensively drug-resistant (XDR) Mycobacterium tuberculosis (MTB) strains is a growing problem in many countries. The availability of the complete nucleotide sequences of several MTB genomes allows to use the comparative genomics as a tool to study the relationships of strains and differences in their evolutionary history including acquisition of drug-resistance. In our work, we sequenced three genomes of Russian MTB strains of different phenotypes – drug susceptible, MDR and XDR. Of them, MDR and XDR strains were collected in Tomsk (Siberia, Russia) during the local TB outbreak in 1998–1999 and belonged to rare KQ and KY families in accordance with IS6110 typing, which are considered endemic for Russia. Based on phylogenetic analysis, our isolates belonged to different genetic families, Beijing, Ural and LAM, which made the direct comparison of their genomes impossible. For this reason we performed their comparison in the broader context of all M. tuberculosis genomes available in GenBank. The list of unique individual non-synonymous SNPs for each sequenced isolate was formed by comparison with all SNPs detected within the same phylogenetic group. For further functional analysis, all proteins with unique SNPs were ascribed to 20 different functional classes based on Clusters of Orthologous Groups (COG). We have confirmed drug resistant status of our isolates that harbored almost all known drug-resistance associated mutations. Unique SNPs of an XDR isolate CTRI-4XDR, belonging to a Beijing family were compared in more detail with SNPs of additional 14 Russian XDR strains of the same family. Only type specific mutations in genes of repair, replication and recombination system (COG category L) were found common within this group. Probably the other unique SNPs discovered in CTRI-4XDR may have an important role in adaptation of this microorganism to its surrounding and in escape from antituberculosis drugs treatment.
机译:在许多国家,由多药耐药性(MDR)和广泛耐药性(XDR)结核分枝杆菌(MTB)菌株引起的结核病是一个日益严重的问题。几个MTB基因组的完整核苷酸序列的可用性允许使用比较基因组学作为工具来研究菌株之间的关系及其进化史(包括获得抗药性)的差异。在我们的工作中,我们对不同表型的俄罗斯MTB菌株的三个基因组进行了测序-药物敏感性,MDR和XDR。其中,MDR和XDR菌株是在1998-1999年当地结核病暴发期间在托木斯克(俄罗斯西伯利亚)收集的,根据IS6110类型,它们属于罕见的KQ和KY家族,被认为是俄罗斯特有的。根据系统发育分析,我们的分离株属于不同的遗传家族,分别是北京,乌拉尔和LAM,这使得它们的基因组直接比较变得不可能。因此,我们在GenBank中所有结核分枝杆菌基因组的更广泛背景下进行了比较。通过与在同一系统发育组中检测到的所有SNP进行比较,形成每个测序分离物的独特个体非同义SNP列表。为了进行进一步的功能分析,基于直系同源簇(COG)将所有具有独特SNP的蛋白质归为20种不同的功能类别。我们已经确认了带有几乎所有已知的耐药相关突变的分离株的耐药状态。将XDR分离株CTRI-4 XDR 的唯一SNP(属于一个北京家族)与该家族的其他14种俄罗斯XDR菌株的SNP进行了详细比较。在该组中,仅发现修复,复制和重组系统(COG类别L)的基因中特定类型的突变是常见的。在CTRI-4 XDR 中发现的其他独特的SNP可能在使这种微生物适应周围环境以及逃脱抗结核药物治疗方面具有重要作用。

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