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钙通过破坏与白色念珠菌的结合来阻断人类唾液组蛋白5的杀菌活性。

Calcium blocks fungicidal activity of human salivary histatin 5 through disruption of binding with Candida albicans.

作者信息

Dong J, Vylkova S, Li X S, Edgerton M

机构信息

Department of Oral Biology, State University of New York, Buffalo, NY 14214, USA.

出版信息

J Dent Res. 2003 Sep;82(9):748-52. doi: 10.1177/154405910308200917.

Abstract

Salivary histatin 5 (Hst 5) kills the fungal pathogen C. albicans via a mechanism that involves binding and subsequent efflux of cellular ATP. Our aims were to identify inorganic ions found in saliva that influence Hst 5 fungicidal activity. Increasing ionic strength with relevant salivary anions (Cl(-) and CO(3)(-)) did not reduce Hst 5 binding or uptake by yeast cells, but reduced the Hst-induced efflux of ATP. Extracellular MgCl(2) (25 mM) maximally inhibited 30-40% of Hst 5 killing with 40% reduction in ATP efflux, while pre-treatment of cells with only 2 mM CaCl(2) inhibited 80-90% of killing, and prevented ATP efflux. Loss of fungicidal activity by the addition of CaCl(2) or MgCl(2) was a result of inhibition of binding of Hst 5 to C. albicans cells. Calcium is a potent inhibitor of Hst 5 candidacidal activity at physiological concentrations and may be the primary salivary ion responsible for the masking effect of saliva.

摘要

唾液组蛋白5(Hst 5)通过一种涉及结合并随后排出细胞ATP的机制杀死真菌病原体白色念珠菌。我们的目的是鉴定唾液中影响Hst 5杀菌活性的无机离子。增加相关唾液阴离子(Cl⁻和CO₃⁻)的离子强度不会降低Hst 5与酵母细胞的结合或摄取,但会减少Hst诱导的ATP排出。细胞外MgCl₂(25 mM)最大程度地抑制了30 - 40%的Hst 5杀伤作用,ATP排出减少40%,而仅用2 mM CaCl₂预处理细胞则抑制了80 - 90%的杀伤作用,并阻止了ATP排出。添加CaCl₂或MgCl₂导致杀菌活性丧失是抑制Hst 5与白色念珠菌细胞结合的结果。钙在生理浓度下是Hst 5杀念珠菌活性的有效抑制剂,可能是导致唾液产生掩盖效应的主要唾液离子。

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