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Structural and Biochemical Characterization of AaL a Quorum Quenching Lactonase with Unusual Kinetic Properties

机译:AaL的结构和生化特性一种具有异常动力学特性的群体猝灭性乳糖酶

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摘要

Quorum quenching lactonases are enzymes that are capable of disrupting bacterial signaling based on acyl homoserine lactones (AHL) via their enzymatic degradation. In particular, lactonases have therefore been demonstrated to inhibit bacterial behaviors that depend on these chemicals, such as the formation of biofilms or the expression of virulence factors. Here we characterized biochemically and structurally a novel representative from the metallo-β-lactamase superfamily, named AaL that was isolated from the thermoacidophilic bacterium Alicyclobacillus acidoterrestris. AaL is a potent quorum quenching enzyme as demonstrated by its ability to inhibit the biofilm formation of Acinetobacter baumannii. Kinetic studies demonstrate that AaL is both a proficient and a broad spectrum enzyme, being capable of hydrolyzing a wide range of lactones with high rates (kcat/KM > 105 M−1.s−1). Additionally, AaL exhibits unusually low KM values, ranging from 10 to 80 µM. Analysis of AaL structures bound to phosphate, glycerol, and C6-AHL reveals a unique hydrophobic patch (W26, F87 and I237), involved in substrate binding, possibly accounting for the enzyme’s high specificity. Identifying the specificity determinants will aid the development of highly specific quorum quenching enzymes as potential therapeutics.
机译:群体猝灭内酯酶是能够通过酰基高丝氨酸内酯(AHL)通过其酶促降解来破坏细菌信号传导的酶。尤其是,因此已证明乳糖酶可抑制依赖于这些化学物质的细菌行为,例如生物膜的形成或毒力因子的表达。在这里,我们从金属-β-内酰胺酶超家族,从热嗜酸细菌酸热脂环酸杆菌中分离出的AaL,从生化和结构上表征了一个新的代表。 AaL是一种有效的群体猝灭酶,其抑制鲍曼不动杆菌生物膜形成的能力证明了这一点。动力学研究表明,AaL既是一种高效酶,又是一种广谱酶,能够高速率水解多种内酯(kcat / KM> 10 5 M -1 .s -1 )。此外,AaL表现出异常低的KM值,范围从10到80µM。对与磷酸盐,甘油和C6-AHL结合的AaL结构的分析揭示了一个独特的疏水性斑块(W26,F87和I237),与底物结合,可能说明了该酶的高特异性。鉴定特异性决定因素将有助于开发高度特异性的群体猝灭酶作为潜在的治疗方法。

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