Instituto Politécnico Nacional-CICIMAR, 23096, La Paz, B.C.S, Mexico.
CONACYT-Centro de Investigaciones Biológicas del Noroeste, SC. Instituto Politécnico Nacional 195, Playa Palo de Santa Rita Sur, La Paz, B.C.S, 23096, Mexico.
Protein Expr Purif. 2021 Dec;188:105971. doi: 10.1016/j.pep.2021.105971. Epub 2021 Sep 9.
Endolysins have been proposed as a potential antibacterial alternative for aquaculture, especially against Vibrio; the bacterial-agents that most frequently cause disease. Although multiple marine vibriophages have been characterized to date, research on vibriophage endolysins is recent. In this study, biochemical characterization of LysVpKK5 endolysin encoded by Vibrio parahaemolyticus-infecting VpKK5 phage was performed. In silico analysis revealed that LysVpKK5 possesses a conserved amidase_2 domain with a zinc-binding motif of high structural similarity to T7 lysozyme (RMSD = 0.107 Å). Contrary to expectations, the activity was inhibited with Zn and was improved with other divalent cations, especially Ca. It showed optimal muralytic activity at pH 10, and curiously, no lytic activity at pH ≤ 7 was recorded. As for the thermal stability test, the optimal activity was recorded at 30 °C; the higher residual activity was recorded at 4 °C, and was lost at ≥ 50 °C. On the other hand, increasing NaCl concentrations reduced the activity gradually; the optimal activity was recorded at 50 mM NaCl. On the other hand, the enzymatic activity at 0.5 M NaCl was approx 30% and of approx 50% in seawater. LysVpKK5 endolysin exhibited a higher activity on V. parahaemolyticus ATCC-17802 strain, in comparison with AHPND + strains.
溶菌酶已被提议作为水产养殖的一种潜在抗菌替代物,特别是针对弧菌;弧菌是最常引起疾病的细菌病原体。尽管迄今为止已经对多种海洋噬菌体进行了表征,但对噬菌体溶菌酶的研究还是最近才开始的。在本研究中,对感染 VpKK5 噬菌体的副溶血弧菌编码的 LysVpKK5 内溶素进行了生化特性分析。计算机分析表明,LysVpKK5 具有保守的酰胺酶_2 结构域,其锌结合基序与 T7 溶菌酶具有高度结构相似性(RMSD = 0.107 Å)。出乎意料的是,该活性被 Zn 抑制,并被其他二价阳离子,尤其是 Ca 增强。它在 pH 10 时表现出最佳的壁裂解活性,而且有趣的是,在 pH ≤ 7 时没有记录到裂解活性。至于热稳定性测试,在 30°C 时记录到最佳活性;在 4°C 时记录到较高的残余活性,在 ≥ 50°C 时丧失。另一方面,增加 NaCl 浓度会逐渐降低活性;在 50 mM NaCl 时记录到最佳活性。另一方面,在 0.5 M NaCl 下的酶活性约为 30%,在海水中约为 50%。与 AHPND + 菌株相比,LysVpKK5 内溶素对 ATCC-17802 菌株的活性更高。