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首页> 外文期刊>Scientific reports. >Non-typeable Haemophilus influenzae isolates from patients with chronic obstructive pulmonary disease contain new phase-variable modA methyltransferase alleles controlling phasevarions
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Non-typeable Haemophilus influenzae isolates from patients with chronic obstructive pulmonary disease contain new phase-variable modA methyltransferase alleles controlling phasevarions

机译:来自慢性阻塞性肺病患者的非类型嗜血杆菌嗜血杆菌含有新的相变Moda甲基转移酶等位基因控制阶段性偏移

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Phasevarions (phase-variable regulons) are emerging as an important area of bacterial gene regulation. Many bacterial pathogens contain phasevarions, with gene expression controlled by the phase-variable expression of DNA methyltransferases via epigenetic mechanisms. Non-typeable Haemophilus influenzae (NTHi) contains the phase-variable methyltransferase modA, of which multiple allelic variants exist (modA1-21). We have previously demonstrated 5 of 21 these modA alleles are overrepresented in NTHi strains isolated from children with middle ear infections. In this study we investigated the modA allele distribution in NTHi strains isolated from patients with chronic obstructive pulmonary disease, COPD. We demonstrate that the distribution of modA alleles in a large panel of COPD isolates is different to the distribution seen in middle ear infections, suggesting different modA alleles may provide distinct advantages in the differing niches of the middle ear and COPD airways. We also identified two new phase-variable modA alleles - modA15 and modA18 - and demonstrate that these alleles methylate distinct DNA sequences and control unique phasevarions. The modA15 and modA18 alleles have only been observed in COPD isolates, indicating that these two alleles may be markers for isolates likely to cause exacerbations of COPD.
机译:PhaseVarions(相变调节件)作为细菌基因调控的重要区域。许多细菌病原体含有阶段性偏振动段,通过表达DNA甲基转移酶的相变表达通过表观遗传机制来控制基因表达。非易形的血液植物甲型(NTHI)含有相变甲基转移酶MODA,其中存在多个等位基因变体(MODA1-21)。我们之前展示了21个中的5个,这些莫达等位基因在患有中耳感染儿童中分离的Nthi菌株中的过度陈述。在这项研究中,我们研究了从慢性阻塞性肺病,COPD患者分离的NTHI菌株中的MODA等位基因分布。我们表明,大型COPD隔离物中的MODA等位基因的分布与中耳感染中所见的分布不同,表明不同的MODA等位基因可能在中耳和COPD气道的不同龛中提供明显的优势。我们还确定了两种新的相变moda等位基因 - Moda15和Moda18 - 并证明这些等位基因甲基化不同的DNA序列和控制独特的缩放序列。在COPD分离物中仅观察到Moda15和Moda18等位基因,表明这两种等位基因可能是可能导致COPD的恶化的分离物的标记物。

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