首页> 外文期刊>Frontiers in Cellular and Infection Microbiology >Quorum Sensing Down-Regulation Counteracts the Negative Impact of Pseudomonas aeruginosa on CFTR Channel Expression, Function and Rescue in Human Airway Epithelial Cells
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Quorum Sensing Down-Regulation Counteracts the Negative Impact of Pseudomonas aeruginosa on CFTR Channel Expression, Function and Rescue in Human Airway Epithelial Cells

机译:法定人数感应下调抵消铜绿假单胞菌对人气道上皮细胞CFTR通道表达,功能和抢救的负面影响

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Abstract The function of cystic fibrosis transmembrane conductance regulator (CFTR) channels is crucial in human airways. However unfortunately, chronic Pseudomonas aeruginosa infection has been shown to impair CFTR proteins in non-CF airway epithelial cells (AEC) and to alter the efficiency of new treatments with CFTR modulators designed to correct the basic CFTR default in AEC from cystic fibrosis (CF) patients carrying the F508del mutation. Our aim was first to compare the effect of laboratory strains, clinical isolates, engineered and natural mutants to determine the role of the LasR quorum sensing system in CFTR impairment, and second, to test the efficiency of a quorum sensing inhibitor to counteract the deleterious impact of P. aeruginosa both on wt-CFTR and on the rescue of F508del-CFTR by correctors. We first report that exoproducts from either the laboratory PAO1 strain or a clinical «Early» isolate (from an early stage of infection) altered CFTR expression, localization and function in AEC expressing wt-CFTR. Genetic inactivation of the quorum-sensing LasR in PAO1 (PAO1ΔlasR) or in a natural clinical mutant («Late» CF-adapted clinical isolate) abolished wt-CFTR impairment. PAO1 exoproducts also dampened F508del-CFTR rescue by VRT-325 or Vx-809 correctors in CF cells, whereas PAO1ΔlasR had no impact. Importantly, treatment of P. aeruginosa cultures with a quorum sensing inhibitor (HDMF) prevented the negative effect of P. aeruginosa exoproducts on wt-CFTR and preserved CFTR rescue by correctors in CF AEC. These findings indicate that LasR-interfering strategies could be of benefits to counteract the deleterious effect of P. aeruginosa in infected patients.
机译:摘要囊性纤维化跨膜电导调节剂(CFTR)通道的功能在人类呼吸道中至关重要。然而,不幸的是,慢性铜绿假单胞菌感染已显示出会损害非CF气道上皮细胞(AEC)中的CFTR蛋白,并会改变CFTR调节剂的新疗法效率,这些调节剂旨在纠正AEC中囊性纤维化(CF)的基本CFTR默认值携带F508del突变的患者。我们的目标是首先比较实验室菌株,临床分离株,工程突变体和天然突变体的影响,以确定LasR群体感应系统在CFTR损伤中的作用,其次,测试群体感应抑制剂抵消有害影响的效率。铜绿假单胞菌对wt-CFTR和校正剂对F508del-CFTR的拯救我们首先报道,实验室PAO1菌株或临床“早期”分离株(来自感染的早期阶段)的外生产物改变了表达wt-CFTR的AEC中的CFTR表达,定位和功能。在PAO1(PAO1ΔlasR)或天然临床突变体(“晚期” CF适应性临床分离株)中群体感应LasR的遗传失活消除了wt-CFTR损伤。 PAO1外生产物还抑制了CF细胞中VRT-325或Vx-809校正剂对F508del-CFTR的拯救,而PAO1ΔlasR没有影响。重要的是,用群体感应抑制剂(HDMF)处理铜绿假单胞菌培养物可防止铜绿假单胞菌外生产物对wt-CFTR的负面影响,并通过CF AEC中的校正剂保留CFTR的拯救作用。这些发现表明,LasR干扰策略可能有助于抵消铜绿假单胞菌对感染患者的有害作用。

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