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Guava Leaf Extract Inhibits Quorum-Sensing and Chromobacterium violaceum Induced Lysis of Human Hepatoma Cells: Whole Transcriptome Analysis Reveals Differential Gene Expression

机译:番石榴叶提取物抑制人肝癌的群体感应和紫质杆菌诱导的裂解:全转录组分析揭示差异基因表达

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摘要

Quorum sensing (QS) is a process mediated via small molecules termed autoinducers (AI) that allow bacteria to respond and adjust according to the cell population density by altering the expression of multitudinous genes. Since QS governs numerous bioprocesses in bacteria, including virulence, its inhibition promises to be an ideal target for the development of novel therapeutics. We found that the aqueous leaf extract of Psidium guajava (GLE) exhibited anti-QS properties as evidenced by inhibition of violacein production in Chromobacterium violaceum and swarming motility of Pseudomonas aeruginosa. The gram-negative bacterium, C. violaceum is a rare pathogen with high mortality rate. In this study, perhaps for the first time, we identified the target genes of GLE in C. violaceum MTCC 2656 by whole transcriptome analysis on Ion Torrent. Our data revealed that GLE significantly down-regulated 816 genes at least three fold, with p value≤0.01, which comprises 19% of the C. violaceum MTCC 2656 genome. These genes were distributed throughout the genome and were associated with virulence, motility and other cellular processes, many of which have been described as quorum regulated in C. violaceum and other gram negative bacteria. Interestingly, GLE did not affect the growth of the bacteria. However, consistent with the gene expression pattern, GLE treated C. violaceum cells were restrained from causing lysis of human hepatoma cell line, HepG2, indicating a positive relationship between the QS-regulated genes and pathogenicity. Overall, our study proposes GLE as a QS inhibitor (QSI) with the ability to attenuate virulence without affecting growth. To the best of our knowledge, this is the first report which provides with a plausible set of candidate genes regulated by the QS system in the neglected pathogen C. violaceum.
机译:群体感应(QS)是一种通过称为自动诱导剂(AI)的小分子介导的过程,该过程允许细菌通过改变多种基因的表达来根据细胞群体密度做出反应和进行调节。由于QS控制着细菌的许多生物过程,包括毒力,因此它的抑制有望成为开发新疗法的理想靶标。我们发现,番石榴叶(GLE)的水性叶提取物表现出抗QS特性,这可通过抑制紫绿杆菌中的紫堇素产生和铜绿假单胞菌的运动来证明。革兰氏阴性菌紫花梭菌是一种罕见的病原体,具有很高的死亡率。在这项研究中,也许是第一次,我们通过在离子洪流中进行全转录组分析,确定了紫花假丝酵母MTCC 2656中GLE的靶基因。我们的数据显示,GLE显着下调了至少三倍的816个基因,p值≤0.01,占紫毛衣藻MTCC 2656基因组的19%。这些基因分布在整个基因组中,并与毒力,运动性和其他细胞过程有关,其中许多已被描述为在紫花梭菌和其他革兰氏阴性细菌中受群体调控。有趣的是,GLE并没有影响细菌的生长。然而,与基因表达模式相一致,GLE处理的紫胶衣芽孢杆菌细胞被抑制导致人肝癌细胞系HepG2裂解,表明QS调控基因与致病性之间存在正相关。总体而言,我们的研究建议将GLE作为QS抑制剂(QSI),具有减弱毒力而不影响生长的能力。据我们所知,这是第一份报告,其中提供了由QS系统调节的,在被忽视的病原体紫胶衣藻中的一组可能的候选基因。

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