幽门螺杆菌基因表达随宿主适应的量子变化

E. Chua, M. Wise, Y. Khosravi, S. Seow, A. A. Amoyo, S. Pettersson, Fanny Peters, C. Tay, Timothy T. Perkins, M. Loke, B. Marshall, J. Vadivelu
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引用次数: 6

摘要

摘要幽门螺杆菌是一种非常成功的胃病原体。高度的基因组可塑性使其能够适应不断变化的宿主环境。利用PacBio RS和Illumina MiSeq测序技术生成的幽门螺杆菌临床分离物UM032及其小鼠适应序列衍生物298和299的全基因组进行比较,以确定负责宿主适应的新元件。在小鼠适应菌株中发现了编码半乳糖转移酶的jhp0562样等位基因。我们的分析表明,这种酶具有新的β-1,4-半乳糖转移酶的作用,对Ley抗原的表达至关重要。babA和babB基因的基因组内重组也被观察到。此外,我们扩展了候选基因的列表,这些候选基因的表达模式已被上游均聚物长度改变介导,以促进宿主的适应。重要的是,有5个基因的mRNA水平降低了4倍以上。在下调的基因中,有3个编码外膜蛋白,包括BabA、BabB和HopD。正如预期的那样,通过Western分析,在小鼠适应菌株298和299中检测到BabA蛋白丰度的显著降低。我们的研究结果表明,Ley抗原的表达和外膜蛋白表达的减少可能促进幽门螺杆菌在小鼠胃上皮的定植。
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Quantum changes in Helicobacter pylori gene expression accompany host-adaptation
Abstract Helicobacter pylori is a highly successful gastric pathogen. High genomic plasticity allows its adaptation to changing host environments. Complete genomes of H. pylori clinical isolate UM032 and its mice-adapted serial derivatives 298 and 299, generated using both PacBio RS and Illumina MiSeq sequencing technologies, were compared to identify novel elements responsible for host-adaptation. The acquisition of a jhp0562-like allele, which encodes for a galactosyltransferase, was identified in the mice-adapted strains. Our analysis implies a new β-1,4-galactosyltransferase role for this enzyme, essential for Ley antigen expression. Intragenomic recombination between babA and babB genes was also observed. Further, we expanded on the list of candidate genes whose expression patterns have been mediated by upstream homopolymer-length alterations to facilitate host adaption. Importantly, greater than four-fold reduction of mRNA levels was demonstrated in five genes. Among the down-regulated genes, three encode for outer membrane proteins, including BabA, BabB and HopD. As expected, a substantial reduction in BabA protein abundance was detected in mice-adapted strains 298 and 299 via Western analysis. Our results suggest that the expression of Ley antigen and reduced outer membrane protein expressions may facilitate H. pylori colonisation of mouse gastric epithelium.
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