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黄酮类化合物通过群体感应受体的变构抑制作用抑制毒力。

Flavonoids Suppress Virulence through Allosteric Inhibition of Quorum-sensing Receptors.

作者信息

Paczkowski Jon E, Mukherjee Sampriti, McCready Amelia R, Cong Jian-Ping, Aquino Christopher J, Kim Hahn, Henke Brad R, Smith Chari D, Bassler Bonnie L

机构信息

From the Department of Molecular Biology and.

CJA MedChem, Hillsborough, North Carolina 27278.

出版信息

J Biol Chem. 2017 Mar 10;292(10):4064-4076. doi: 10.1074/jbc.M116.770552. Epub 2017 Jan 24.

DOI:10.1074/jbc.M116.770552
PMID:28119451
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5354481/
Abstract

Quorum sensing is a process of cell-cell communication that bacteria use to regulate collective behaviors. Quorum sensing depends on the production, detection, and group-wide response to extracellular signal molecules called autoinducers. In many bacterial species, quorum sensing controls virulence factor production. Thus, disrupting quorum sensing is considered a promising strategy to combat bacterial pathogenicity. Several members of a family of naturally produced plant metabolites called flavonoids inhibit biofilm formation by an unknown mechanism. Here, we explore this family of molecules further, and we demonstrate that flavonoids specifically inhibit quorum sensing via antagonism of the autoinducer-binding receptors, LasR and RhlR. Structure-activity relationship analyses demonstrate that the presence of two hydroxyl moieties in the flavone A-ring backbone are essential for potent inhibition of LasR/RhlR. Biochemical analyses reveal that the flavonoids function non-competitively to prevent LasR/RhlR DNA binding. Administration of the flavonoids to alters transcription of quorum sensing-controlled target promoters and suppresses virulence factor production, confirming their potential as anti-infectives that do not function by traditional bacteriocidal or bacteriostatic mechanisms.

摘要

群体感应是细菌用来调节集体行为的一种细胞间通讯过程。群体感应依赖于对称为自诱导物的细胞外信号分子的产生、检测及全群体响应。在许多细菌物种中,群体感应控制毒力因子的产生。因此,破坏群体感应被认为是对抗细菌致病性的一种有前景的策略。一类天然产生的植物代谢产物——类黄酮中的几种成分通过未知机制抑制生物膜形成。在此,我们进一步探究这类分子,并证明类黄酮通过拮抗自诱导物结合受体LasR和RhlR特异性抑制群体感应。构效关系分析表明,黄酮A环主链中两个羟基部分的存在对于有效抑制LasR/RhlR至关重要。生化分析揭示,类黄酮以非竞争性方式发挥作用以阻止LasR/RhlR与DNA结合。将类黄酮施用于[具体对象未提及]会改变群体感应控制的靶启动子的转录并抑制毒力因子的产生,证实了它们作为不以传统杀菌或抑菌机制发挥作用的抗感染药物的潜力。

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