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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Influence of pH on the activity of thrombin-derived antimicrobial peptides
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Influence of pH on the activity of thrombin-derived antimicrobial peptides

机译:pH对凝血酶抗菌肽活性的影响

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The wound environment is characterized by physiological pH changes. Proteolysis of thrombin by wound-derived proteases, such as neutrophil elastase, generates antimicrobial thrombin-derived C-terminal peptides (TCPs), such as HVF18 (HVFRLKKWIQKVIDQFGE). Presence of such TCPs in human wound fluids in vivo, as well as the occurrence of an evolutionarily conserved His residue in the primary amino acid sequence of TCPs, prompted us to investigate the pH-dependent antibacterial action of HVF18, as well as of the prototypic GKY25 (GKYGFYTHVFRLKKWIQKVIDQFGE). We show that protonation of this His residue at pH 5.5 increases the antibacterial activity of both TCPs against Gram-negative Escherichia coil by membrane disruption. Physiological salt level (150 mM NaCI) augments antibacterial activity of GKY25 but diminishes for the shorter HVF18. Replacing His with Leu or Ser in GKY25 abolishes the His protonation-dependent increase in antibacterial activity at pH 5.5, whereas substitution with Lys maintains activity at neutral (pH 7.4) and acidic pH. Interestingly, both TCPs display decreased binding affinities to human CD14 with decreasing pH, suggesting a likely switch in mode-of-action, from anti-inflammatory at neutral pH to antibacterial at acidic pH. Together, the results demonstrate that apart from structural prerequisites such as peptide length, charge, and hydrophobicity, the evolutionarily conserved His residue of TCPs influences their antibacterial effects and reveals a previously unknown aspect of TCPs biological action.
机译:伤口环境的特征在于生理pH变化。通过伤口衍生的蛋白酶(例如嗜中性粒细胞弹性蛋白酶)的蛋白水解产生抗微生物凝血酶衍生的C末端肽(TCP),例如HVF18(HVFRLKKWIQKVIDQFGE)。在体内的人类伤口流体中存在这种TCP,以及在TCP的原发性氨基酸序列中发生进化地保守他的残留物,促使我们研究HVF18的pH依赖性抗菌作用以及原型的抗菌作用代理棒25(GKYGFYTHVFRLKKWIQKVIDQFGE)。我们表明,这种在pH5.5下的残留物的质子化通过膜破坏增加了TCP对革兰阴性大肠杆菌的抗菌活性。生理盐水平(150 mm NaCi)增加了代理25的抗菌活性,但为较短的HVF18减少。用Leu或Ser替换代理25中的雷乌斯依赖于pH5.5的抗菌活性的增加,而用Lys取代在中性(pH7.4)和酸性pH下保持活性。有趣的是,两种TCPS显示出对人CD14的结合亲和力降低了pH值,所述pH值降低,所述pH值可能从所述中性pH下的所述抗炎症转换为酸性pH的抗菌。结果表明,除了肽长度,电荷和疏水等结构先决条件之外,进化地保守他的TCP的残留物影响其抗菌作用,并揭示了TCPS生物学作用的先前未知的方面。

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