Antibacterial properties of eosinophil major basic protein and eosinophil cationic protein.

主要碱性蛋白 嗜酸性阳离子蛋白 细菌外膜 嗜酸性粒细胞颗粒蛋白 大肠杆菌 微生物学 化学 细胞质 嗜酸性粒细胞 生物 生物化学 免疫学 哮喘 基因
作者
Robert I. Lehrer,D Szklarek,A Barton,Tomas Ganz,K. Hamann,Gerald J. Gleich
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:142 (12): 4428-4434 被引量:113
标识
DOI:10.4049/jimmunol.142.12.4428
摘要

We examined the bactericidal activity of two proteins that are abundant in the cytoplasmic granules of human eosinophils, major basic protein (MBP) and eosinophil cationic protein (ECP). Unlike the human neutrophil's peptide defensins, both MBP and ECP killed stationary phase Staphylococcus aureus 502A in a simple nutrient-free buffer solution. Although MBP also killed Escherichia coli ML-35 with considerable efficacy under these experimental conditions, the in vitro activity of ECP against E. coli was considerably enhanced if mid-logarithmic phase bacteria replaced stationary phase organisms or if the assay medium was enriched with trypticase soy broth. The antibacterial activity of both eosinophil proteins was modulated by incubation time, protein concentration, temperature and pH. A pBR322-transformed derivative of E. coli ML-35 was used to examine the effects of ECP and MBP on integrity of the bacterial inner membrane (IM) and outer membrane. Although both MBP and ECP caused outer and inner membrane permeabilization when nutrients were present, only MBP was effective under nutrient-free conditions. Two proton ionophores (DNP and carbonyl cyanide m-chlorophenyl hydrazone) protected E. coli from the bactericidal effects of ECP but not from MBP. These findings establish that MBP and ECP have bactericidal properties and suggest that these proteins kill E. coli by similar but nonidentical mechanisms marked by an attack on the target cell's membranes. In view of evidence that high concentrations of ECP and MBP exist in cytoplasmic granules whose contents are translocated to phagocytic vacuoles, we suggest that MBP and ECP contribute to the eosinophil's ability to kill ingested bacteria.

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