Department of Plant Pathology, China Agricultural University, Beijing 100193, China.
Appl Environ Microbiol. 2010 Aug;76(15):4933-42. doi: 10.1128/AEM.00477-10. Epub 2010 Jun 4.
N-acylhomoserine lactones (AHLs) are signaling molecules in many quorum-sensing (QS) systems that regulate interactions between various pathogenic bacteria and their hosts. Quorum quenching by the enzymatic inactivation of AHLs holds great promise in preventing and treating infections, and several such enzymes have been reported. In this study, we report the characterization of a novel AHL-degrading protein from the soil bacterium Ochrobactrum sp. strain T63. This protein, termed AidH, shares no similarity with any of the known AHL degradases but is highly homologous with a hydrolytic enzyme from Ochrobactrum anthropi ATCC 49188 that contains the alpha/beta-hydrolase fold. By liquid chromatography-mass spectrometry (MS) analysis, we demonstrate that AidH functions as an AHL-lactonase that hydrolyzes the ester bond of the homoserine lactone ring of AHLs. Mutational analyses indicate that the G-X-Nuc-X-G motif or the histidine residue conserved among alpha/beta-hydrolases is critical for the activity of AidH. Furthermore, the AHL-inactivating activity of AidH requires Mn(2+) but not several other tested divalent cations. We also showed that AidH significantly reduces biofilm formation by Pseudomonas fluorescens 2P24 and the pathogenicity of Pectobacterium carotovorum, indicating that this enzyme is able to effectively quench QS-dependent functions in these bacteria by degrading AHLs.
N-酰基高丝氨酸内酯(AHLs)是许多群体感应(QS)系统中的信号分子,调节各种病原菌与其宿主之间的相互作用。通过酶促失活 AHLs 来进行群体感应淬灭在预防和治疗感染方面具有很大的潜力,已经报道了几种这样的酶。在这项研究中,我们报告了一种来自土壤细菌 Ochrobactrum sp. 菌株 T63 的新型 AHL 降解蛋白的特性。这种蛋白,称为 AidH,与任何已知的 AHL 降解酶都没有相似性,但与 Ochrobactrum anthropi ATCC 49188 的一种水解酶高度同源,后者含有 α/β-水解酶折叠。通过液相色谱-质谱(MS)分析,我们证明 AidH 作为 AHL 内酯酶起作用,水解 AHL 中高丝氨酸内酯环的酯键。突变分析表明,在 α/β-水解酶中保守的 G-X-Nuc-X-G 基序或组氨酸残基对于 AidH 的活性至关重要。此外,AidH 的 AHL 失活活性需要 Mn(2+),但不需要其他几种测试的二价阳离子。我们还表明,AidH 显著降低了荧光假单胞菌 2P24 的生物膜形成和果胶杆菌的致病性,表明该酶通过降解 AHLs 能够有效地淬灭这些细菌中依赖于 QS 的功能。