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Systematic Identification of Selective Essential Genes in Helicobacter pylori by Genome Prioritization and Allelic Replacement Mutagenesis

机译:通过基因组优先和等位基因置换诱变系统识别幽门螺杆菌中的选择性必需基因

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摘要

A comparative genomic approach was used to identify Helicobacter pylori 26695 open reading frames (ORFs) which are conserved in H. pylori J99 but highly diverged in other eubacteria. A survey of selected pathways of central intermediary metabolism was also carried out, and genes with a potentially selective role in H. pylori were identified. Forty-five ORFs identified in these two analyses were screened using a rapid vector-free allelic replacement mutagenesis technique, and 33 were shown to be essential in vitro. Notably, 13 ORFs gave essentiality results which are unexpected in view of their known or proposed functions, and phylogenetic analysis was used to investigate the annotation of 7 such ORFs which are highly diverged. We propose that the products of a number of these H. pylori-specific essential genes may be suitable targets for novel anti-H. pylori therapies.
机译:使用比较基因组学方法来鉴定幽门螺杆菌26695开放阅读框(ORF),该框架在幽门螺杆菌J99中是保守的,但在其他真细菌中却高度不同。还对中枢中间代谢的选定途径进行了调查,并鉴定了在幽门螺杆菌中具有潜在选择性作用的基因。使用快速的无载体等位基因置换诱变技术筛选了在这两个分析中鉴定出的四十五个ORF,其中33个在体外是必需的。值得注意的是,有13个ORF给出了必要的结果,鉴于它们的已知功能或提议的功能,这些结果是出乎意料的,并且系统发育分析被用来研究7个高度不同的ORF的注释。我们建议,许多这些幽门螺杆菌特异性必需基因的产物可能是新型抗H的合适靶标。幽门螺杆菌疗法。

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