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来自矛头蝮蛇毒的Lys49和Asp49肌毒性磷脂酶A2的杀菌活性——合成的Lys49肌毒素II-(115 - 129)肽确定其杀菌区域。

Bactericidal activity of Lys49 and Asp49 myotoxic phospholipases A2 from Bothrops asper snake venom--synthetic Lys49 myotoxin II-(115-129)-peptide identifies its bactericidal region.

作者信息

Páramo L, Lomonte B, Pizarro-Cerdá J, Bengoechea J A, Gorvel J P, Moreno E

机构信息

Programa de Investigación en Enfermedades Tropicales, Escuela de Medicina Veterinaria, Universidad Nacional, Heredia, Costa Rica.

出版信息

Eur J Biochem. 1998 Apr 15;253(2):452-61. doi: 10.1046/j.1432-1327.1998.2530452.x.

Abstract

Mammalian group-II phospholipases A2 (PLA2) of inflammatory fluids display bactericidal properties, which are dependent on their enzymatic activity. This study shows that myotoxins II (Lys49) and III (Asp49), two group-II PLA2 isoforms from the venom of Bothrops asper, are lethal to a broad spectrum of bacteria. Since the catalytically inactive Lys49 myotoxin II isoform has similar bactericidal effects to its catalytically active Asp49 counterpart, a bactericidal mechanism that is independent of an intrinsic PLA2 activity is demonstrated. Moreover, a synthetic 13-residue peptide of myotoxin II, comprising residues 115-129 (common numbering system) near the C-terminal loop, reproduced the bactericidal effect of the intact protein. Following exposure to the peptide or the protein, accelerated uptake of the hydrophobic probe N-phenyl-N-naphthylamine was observed in susceptible but not in resistant bacteria, indicating that the lethal effect was initiated on the bacterial membrane. The outer membrane, isolated lipopolysaccharide (LPS), and lipid A of susceptible bacteria showed higher binding to the myotoxin II-(115-129)-peptide than the corresponding moieties of resistant strains. Bacterial LPS chimeras indicated that LPS is a relevant target for myotoxin II-(115-129)-peptide. When heterologous LPS of the resistant strain was present in the context of susceptible bacteria, the chimera became resistant, and vice versa. Myotoxin II represents a group-II PLA2 with a direct bactericidal effect that is independent of an intrinsic enzymatic activity, but adscribed to the presence of a short cluster of basic/hydrophobic amino acids near its C-terminal loop.

摘要

炎症液中的哺乳动物II型磷脂酶A2(PLA2)具有杀菌特性,这取决于它们的酶活性。本研究表明,来自墨西哥矛头蝮蛇毒液的两种II型PLA2亚型——肌毒素II(Lys49)和肌毒素III(Asp49),对多种细菌具有致死性。由于催化无活性的Lys49肌毒素II亚型与其催化活性的Asp49对应物具有相似的杀菌效果,因此证明了一种独立于内在PLA2活性的杀菌机制。此外,肌毒素II的一种合成13残基肽,包含C末端环附近的115 - 129位残基(通用编号系统),重现了完整蛋白质的杀菌效果。在暴露于该肽或蛋白质后,在敏感细菌而非抗性细菌中观察到疏水探针N - 苯基 - N - 萘胺的摄取加速,表明致死作用始于细菌膜。敏感细菌的外膜、分离的脂多糖(LPS)和脂质A与肌毒素II -(115 - 129)-肽的结合高于抗性菌株的相应部分。细菌LPS嵌合体表明LPS是肌毒素II -(115 - 129)-肽的相关靶标。当抗性菌株的异源LPS存在于敏感细菌的背景中时,嵌合体变得具有抗性,反之亦然。肌毒素II代表一种具有直接杀菌作用的II型PLA2,其独立于内在酶活性,但归因于其C末端环附近存在一小簇碱性/疏水氨基酸。

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