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Disruption of tetR type regulator adeN by mobile genetic element confers elevated virulence in Acinetobacter baumannii

机译:通过移动遗传元件破坏tetR型调节子adeN赋予鲍曼不动杆菌高毒力

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ABSTRACT Acinetobacter baumannii is an important human pathogen and considered as a major threat due to its extreme drug resistance. In this study, the genome of a hyper-virulent MDR strain PKAB07 of A. baumannii isolated from an Indian patient was sequenced and analyzed to understand its mechanisms of virulence, resistance and evolution. Comparative genome analysis of PKAB07 revealed virulence and resistance related genes scattered throughout the genome, instead of being organized as an island, indicating the highly mosaic nature of the genome. Many intermittent horizontal gene transfer events, insertion sequence (IS) element insertions identified were augmenting resistance machinery and elevating the SNP densities in A. baumannii eventually aiding in their swift evolution. ISAba1, the most widely distributed insertion sequence in A. baumannii was found in multiple sites in PKAB07. Out of many ISAba1 insertions, we identified novel insertions in 9 different genes wherein insertional inactivation of adeN (tetR type regulator) was significant. To assess the significance of this disruption in A. baumannii, adeN mutant and complement strains were constructed in A. baumannii ATCC 17978 strain and studied. Biofilm levels were abrogated in the adeN knockout when compared with the wild type and complemented strain of adeN knockout. Virulence of the adeN knockout mutant strain was observed to be high, which was validated by in vitro experiments and Galleria mellonella infection model. The overexpression of adeJ, a major component of AdeIJK efflux pump observed in adeN knockout strain could be the possible reason for the elevated virulence in adeN mutant and PKB07 strain. Knocking out of adeN in ATCC strain led to increased resistance and virulence at par with the PKAB07. Disruption of tetR type regulator adeN by ISAba1 consequently has led to elevated virulence in this pathogen.
机译:摘要鲍曼不动杆菌是一种重要的人类病原体,由于其极高的耐药性而被视为主要威胁。在这项研究中,对从印度患者身上分离的鲍曼不动杆菌的高毒力MDR株PKAB07的基因组进行了测序和分析,以了解其毒力,抗性和进化机制。 PKAB07的比较基因组分析显示,毒力和与抗性相关的基因散布在整个基因组中,而不是组织成一个岛,表明基因组的高度镶嵌性。许多间歇性水平基因转移事件,鉴定出的插入序列(IS)元件插入增强了鲍曼不动杆菌的抗性机制并提高了SNP密度,最终有助于它们的迅速进化。 ISAba1是鲍曼不动杆菌中分布最广泛的插入序列,存在于PKAB07的多个位点。在许多ISAba1插入中,我们在9个不同的基因中鉴定出新颖的插入,其中adeN(tetR型调节子)的插入失活很重要。为了评估这种破坏在鲍曼不动杆菌中的重要性,在鲍曼不动杆菌ATCC 17978菌株中构建了adeN突变体和补体菌株并进行了研究。与野生型和adeN基因敲除的互补菌株相比,adeN基因敲除的生物膜水平被消除。观察到adeN基因敲除突变株的毒力很高,这已通过体外实验和梅勒埃勒菌感染模型进行了验证。在adeN基因敲除菌株中观察到的adeJ,AdeIJK外排泵的主要成分的过表达可能是adeN突变体和PKB07菌株毒力升高的可能原因。敲除ATCC菌株中的adeN导致与PKAB07相同的抗性和毒力增加。因此,ISAba1破坏tetR型调节子adeN导致该病原体的毒力升高。

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