首页> 外文OA文献 >Antibacterial properties of the sperm-binding proteins and peptides of human epididymis 2 (HE2) family; salt sensitivity, structural dependence and their interaction with outer and cytoplasmic membranes of Escherichia coli.
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Antibacterial properties of the sperm-binding proteins and peptides of human epididymis 2 (HE2) family; salt sensitivity, structural dependence and their interaction with outer and cytoplasmic membranes of Escherichia coli.

机译:人附睾2(HE2)家族精子结合蛋白和肽的抗菌特性;盐敏感性,结构依赖性及其与大肠杆菌外膜和细胞质膜的相互作用。

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摘要

During passage through the epididymis, sperm interact with secreted epididymal proteins that promote maturation, including the acquisition of motility and fertilization competence. Viewed previously as distinct from sperm maturation, host defence capabilities are now recognized functions of the human epididymis 2 (HE2) family of sperm-binding proteins. We analysed the potent dose and time-dependent bactericidal activity of recombinant HE2alpha, HE2beta1 and HE2beta2 and found that the full-length proteins (10 microg/ml or approximately 1 microM) caused more than a 50% decrease in Escherichia coli colony forming units within 15 min. By contrast, human beta-defensin-1, at a similar concentration, required more than 90 min to exhibit similar antibacterial activity. The epididymis-specific lipocalin, LCN6, failed to kill bacteria. Higher concentrations (25-100 microg/ml) of HE2 proteins and a longer duration of treatment resulted in near total inhibition of bacterial growth. The C-terminal peptides of HE2alpha, HEbeta1 and HEbeta2 proteins exhibited antibacterial activity similar to their full-length counterparts, indicating that the antibacterial activity of HE2 proteins resides in these C-terminal regions. Antibacterial activities of HE2 proteins and peptides were slightly inhibited by NaCl concentrations of up to 150 mM, while human beta-defensin-1 activity was nearly eliminated. Reduction and alkylation of disulphide bonds in HE2 proteins and their C-terminal peptides abolished their antibacterial activity. Consistent with the ability to kill bacteria, full-length HE2 proteins and C-terminal peptides caused rapid dose-dependent permeabilization of outer and cytoplasmic E. coli membranes. A much longer exposure time was required for human beta-defensin-1-mediated permeabilization of membranes, suggesting a possible difference in mode of action compared with the HE2 antibacterial peptides.
机译:在通过附睾过程中,精子与分泌的附睾蛋白相互作用,从而促进成熟,包括获得运动能力和受精能力。以前认为与精子成熟不同,宿主防御能力现在是人类附睾2(HE2)精子结合蛋白家族的公认功能。我们分析了重组HE2alpha,HE2beta1和HE2beta2的有效剂量和时间依赖性杀菌活性,发现全长蛋白质(10 microg / ml或大约1 microM)引起大肠杆菌内菌落形成单位的减少超过50% 15分钟相比之下,相似浓度的人β-防御素1需要90分钟以上的时间才能表现出相似的抗菌活性。附睾特异的脂环蛋白LCN6无法杀死细菌。较高浓度(25-100微克/毫升)的HE2蛋白和较长的治疗时间几乎完全抑制了细菌的生长。 HE2alpha,HEbeta1和HEbeta2蛋白的C末端肽表现出与它们的全长类似物相似的抗菌活性,表明HE2蛋白质的抗菌活性位于这些C末端区域。高达150 mM的NaCl浓度会轻微抑制HE2蛋白质和多肽的抗菌活性,而人类β-防御素1活性几乎被消除。 HE2蛋白及其C端肽中二硫键的还原和烷基化消除了它们的抗菌活性。与杀死细菌的能力一致,全长HE2蛋白和C末端肽可引起大肠杆菌的外膜和细胞质膜的剂量依赖性快速通透。人β-防御素-1介导的膜通透性需要更长的暴露时间,这表明与HE2抗菌肽相比,作用方式可能存在差异。

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