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Cloning expression and characterization of a peptidoglycan hydrolase from the Burkholderia pseudomallei phage ST79

机译:伯克霍尔德菌假Mallei噬菌体ST79的肽聚糖水解酶的克隆表达和表征

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摘要

The lytic phage ST79 of Burkholderia pseudomallei can lyse a broad range of its host including antibiotic resistant isolates from within using a set of proteins, holin, lysB, lysC and endolysin, a peptidoglycan (PG) hydrolase enzyme. The phage ST79 endolysin gene identified as peptidase M15A was cloned, expressed and purified to evaluate its potential to lyse pathogenic bacteria. The molecular size of the purified enzyme is approximately 18 kDa and the in silico study cited here indicated the presence of a zinc-binding domain predicted to be a member of the subfamily A of a metallopeptidase. Its activity, however, was reduced by the presence of Zn2+. When Escherichia coli PG was used as a substrate and subjected to digestion for 5 min with 3 μg/ml of enzyme, the peptidase M15A showed 2 times higher in lysis efficiency when compared to the commercial lysozyme. The enzyme works in a broad alkaligenic pH range of 7.5–9.0 and temperatures from 25 to 42 °C. The enzyme was able to lyse 18 Gram-negative bacteria in which the outer membrane was permeabilized by chloroform treatment. Interestingly, it also lysed Enterococcus sp., but not other Gram-positive bacteria. In general, endolysin cannot lyse Gram-negative bacteria from outside, however, the cationic amphipathic C-terminal in some endolysins showed permeability to Gram-negative outer membranes. Genetically engineered ST79 peptidase M15A that showed a broad spectrum against Gram-negative bacterial PG or, in combination with an antibiotic the same way as combined drug methodology, could facilitate an effective treatment of severe or antibiotic resistant cases.
机译:假伯克霍尔德氏菌的裂解噬菌体ST79可以通过使用一组蛋白质,霍林蛋白,lysB,lysC和溶血素,一种肽聚糖(PG)水解酶从内部裂解包括宿主抗性分离株在内的多种宿主。克隆,表达和纯化鉴定为肽酶M15A的噬菌体ST79内溶素基因,以评估其裂解病原细菌的潜力。纯化的酶的分子大小约为18 kDa,此处引用的计算机分析表明存在锌结合域,该域预计是金属肽酶亚家族A的成员。但是,Zn 2 + 的存在会降低其活性。当大肠杆菌PG作为底物并用3μg/ ml的酶消化5分钟时,肽酶M15A的裂解效率是商业溶菌酶的2倍。该酶可在7.5–9.0的宽碱度pH范围和25至42°C的温度下工作。该酶能够裂解18种革兰氏阴性细菌,其中的外膜通过氯仿处理而被透化。有趣的是,它还裂解了肠球菌,但不裂解其他革兰氏阳性菌。通常,溶血素不能从外部裂解革兰氏阴性细菌,但是,某些溶血素的阳离子两亲性C末端对革兰氏阴性外膜具有渗透性。经过基因工程处理的ST79肽酶M15A对革兰氏阴性细菌PG表现出广谱性,或者与联合药物方法一样与抗生素联合使用,可以促进重症或抗生素耐药病例的有效治疗。

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