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Salivary Histatin 5 and Human Neutrophil Defensin 1 Kill Candida albicans via Shared Pathways

机译:唾液组蛋白5和人类嗜中性粒细胞防御素1通过共享途径杀死白色念珠菌

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摘要

Salivary histatins are a family of basic histidine-rich proteins in which therapeutic potential as drugs against oral candidiasis is apparent, considering their potent in vitro antifungal activity and lack of toxicity to humans. Histatin 5 (Hst 5) kills the fungal pathogen Candida albicans via a mechanism that involves binding to specific sites on the yeast cell membrane and subsequent release of cellular ATP in the absence of cytolysis. We explored the killing pathway activated by Hst 5 and compared it to those activated by other antifungal agents. The candidacidal activity of human neutrophil defensin 1 (HNP-1) shared very similar features to Hst 5 cytotoxic action with respect to active concentrations and magnitude of induction of nonlytic ATP efflux, depletion of intracellular ATP pools, and inhibitor profile. Hst 5 and HNP-1 are basic proteins of about 3 kDa; however, they have unique primary sequences and solution structures that cannot explain how these two molecules act so similarly on C. albicans to induce cell death. Our finding that HNP-1 prevented Hst 5 binding to the candidal Hst 5 binding protein suggests that the basis for the overlapping actions of these two naturally occurring antimicrobial proteins may involve interactions with shared yeast components.
机译:唾液组蛋白是一类富含组氨酸的碱性蛋白家族,考虑到其有效的体外抗真菌活性和对人体的毒性,在唾液中的组蛋白具有很强的治疗口腔念珠菌病的潜力。组蛋白5(Hst 5)通过一种机制杀死真菌病原体白色念珠菌,该机制涉及与酵母细胞膜上的特定位点结合,然后在无细胞溶解的情况下释放细胞ATP。我们探索了Hst 5激活的杀伤途径,并将其与其他抗真菌剂激活的杀伤途径进行了比较。关于中性粒细胞防御素1(HNP-1)的候选酸活性,与非溶解性ATP外排的活性浓度和诱导程度,细胞内ATP池耗竭以及抑制剂谱具有与Hst 5细胞毒性作用非常相似的特征。 Hst 5和HNP-1是大约3 kDa的碱性蛋白;但是,它们具有独特的一级序列和溶液结构,无法解释这两个分子如何在白色念珠菌上如此相似地诱导细胞死亡。我们的发现HNP-1阻止了Hst 5与候选Hst 5结合蛋白的结合,这表明这两种天然存在的抗菌蛋白重叠作用的基础可能涉及与共享酵母成分的相互作用。

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