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鉴定五种新型来自革兰氏阴性侵染噬菌体的内溶素。

Characterization of five novel endolysins from Gram-negative infecting bacteriophages.

机构信息

Laboratory of Gene Technology, Katholieke Universiteit Leuven, Kasteelpark Arenberg 21, box 2462, 3001 Leuven, Belgium.

出版信息

Appl Microbiol Biotechnol. 2013 May;97(10):4369-75. doi: 10.1007/s00253-012-4294-7. Epub 2012 Jul 26.

Abstract

We here characterize five globular endolysins, encoded by a set of Gram-negative infecting bacteriophages: BcepC6gp22 (Burkholderia cepacia phage BcepC6B), P2gp09 (Escherichia coli phage P2), PsP3gp10 (Salmonella enterica phage PsP3), K11gp3.5 and KP32gp15 (Klebsiella pneumoniae phages K11 and KP32, respectively). In silico, BcepC6gp22, P2gp10 and PsP3gp10 are predicted to possess lytic transglycosylase activity, whereas K11gp3.5 and KP32gp15 have putative amidase activity. All five endolysins show muralytic activity on the peptidoglycan of several Gram-negative bacterial species. In vitro, Pseudomonas aeruginosa PAO1 is clearly sensitive for the antibacterial action of the five endolysins in the presence of the outer membrane permeabilizer EDTA: reductions are ranging from 1.89 to 3.08 log units dependent on the endolysin. The predicted transglycosylases BcepC6gp22, P2gp10 and PsP3gp10 have a substantially higher muralytic and in vitro antibacterial activity compared to the predicted amidases K11gp3.5 and KP32gp15, highlighting the impact of the catalytic specificity on endolysin activity. Furthermore, initial data exclude the synergistic lethal effect of a combination of the predicted transglycosylase PsP3gp10 and the predicted amidase K11gp3.5 on PAO1. As these globular endolysins show a lower enzymatic and antibacterial activity, in comparison to modular endolysins, we suggest that the latter should be favored for antibacterial applications.

摘要

我们在这里描述了五个球状内溶素,它们由一组革兰氏阴性侵染噬菌体编码:BcepC6gp22(洋葱伯克霍尔德氏菌噬菌体 BcepC6B)、P2gp09(大肠杆菌噬菌体 P2)、PsP3gp10(沙门氏菌噬菌体 PsP3)、K11gp3.5 和 KP32gp15(分别为肺炎克雷伯氏菌噬菌体 K11 和 KP32)。通过计算机模拟,BcepC6gp22、P2gp10 和 PsP3gp10 被预测具有溶菌转糖苷酶活性,而 K11gp3.5 和 KP32gp15 具有潜在的酰胺酶活性。所有五个内溶素在几种革兰氏阴性细菌的肽聚糖上都表现出溶壁活性。在体外,当存在外膜通透剂 EDTA 时,铜绿假单胞菌 PAO1 对五种内溶素的抗菌作用明显敏感:依赖于内溶素,减少幅度从 1.89 到 3.08 个对数单位不等。预测的转糖苷酶 BcepC6gp22、P2gp10 和 PsP3gp10 与预测的酰胺酶 K11gp3.5 和 KP32gp15 相比,具有更高的溶壁和体外抗菌活性,这突出了催化特异性对内溶素活性的影响。此外,初步数据排除了预测的转糖苷酶 PsP3gp10 和预测的酰胺酶 K11gp3.5 组合对 PAO1 产生协同致死作用的可能性。由于这些球状内溶素的酶活性和抗菌活性较低,与模块化内溶素相比,我们建议后者应优先用于抗菌应用。

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