College of Food Science and Technology, National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, Bohai University, Liaoning, Jinzhou121013, China.
College of Food Science and Technology, Jiangnan University, Jiangsu, Wuxi214122, China.
J Agric Food Chem. 2022 Nov 16;70(45):14510-14521. doi: 10.1021/acs.jafc.2c05753. Epub 2022 Nov 4.
The -acyl homoserine lactone (AHL) acylases are widely used as quorum sensing (QS) blockers to inhibit bacterial food spoilage. However, their substrate specificity for long-chain substrates weakens their efficiency. In this study, a computer-assisted design of AHL acylase PF2571 was performed to modify its substrate scope. The results showed that the variant PF2571 could effectively quench -hexanoyl-l-homoserine lactone and -octanoyl-l-homoserine lactone without impairing its activity against long-chain AHLs. Kinetic analysis of the enzymatic activities further corroborated the observed substrate expansion. The inhibitory activities of this variant were significantly enhanced against the QS phenotype of BY-8, with inhibition rates of 45.67, 78.25, 54.21, and 54.65% against proteases, motility, biofilms, and extracellular polysaccharides, respectively. Results for molecular dynamics simulation showed that the steric hindrance, induced by residue substitution, could have been responsible for the change in substrate scope. This study dramatically improves the practicability of AHL acylase in controlling food spoilage.
酰基高丝氨酸内酯 (AHL) 酰基水解酶被广泛用作群体感应 (QS) 阻断剂来抑制细菌引起的食物腐败。然而,它们对长链底物的特异性较弱,降低了其效率。在本研究中,通过计算机辅助设计对 AHL 酰基水解酶 PF2571 进行了改造,以扩大其底物范围。结果表明,变体 PF2571 可以有效淬灭 -己酰基-l-高丝氨酸内酯和 -辛酰基-l-高丝氨酸内酯,而不影响其对长链 AHL 的活性。酶活性的动力学分析进一步证实了观察到的底物扩展。该变体对 BY-8 的 QS 表型的抑制活性显著增强,对蛋白酶、运动性、生物膜和胞外多糖的抑制率分别为 45.67%、78.25%、54.21%和 54.65%。分子动力学模拟结果表明,取代引起的空间位阻可能是导致底物范围变化的原因。本研究显著提高了 AHL 酰基水解酶在控制食物腐败方面的实用性。