Bobek Libuse A, Situ Hongsa
Department of Oral Biology, University at Buffalo, The State University of New York, Buffalo, New York 14214, USA.
Antimicrob Agents Chemother. 2003 Feb;47(2):643-52. doi: 10.1128/AAC.47.2.643-652.2003.
This study was aimed at examining the spectrum of antimicrobial activity of MUC7 20-mer (N-LAHQKPFIRKSYKCLHKRCR-C; residues 32 to 51 of MUC7, the low-molecular-weight human salivary mucin, comprised of 357 residues) and comparing its antifungal properties to those of salivary histatin 5 (Hsn-5). We also examined the secondary structure of the 20-mer and the possible mechanism of its antifungal action. Our results showed that MUC7 20-mer displays potent killing activity against a variety of fungi and both gram-positive and gram-negative bacteria at micromolar concentrations. Time-dependent killing of Candida albicans and Cryptococcus neoformans by MUC7 20-mer and Hsn-5 indicated differences in killing rates between MUC7 20-mer and Hsn-5. The secondary structure prediction showed that MUC7 20-mer adopts an amphiphilic helix with distinguishable hydrophilic and hydrophobic faces (a characteristic that is associated with antimicrobial activity). In comparison to that of Hsn-5, the fungicidal activity of MUC7 20-mer against C. albicans seems to be independent of fungal cellular metabolic activity, as evidenced by its killing potency at a low temperature (4 degrees C) and in the presence of inhibitors of oxidative phosphorylation in the mitochondrial system. Fluorescence microscopy showed the ability of MUC7 20-mer to cross the fungal cell membrane and to accumulate inside the cells. The internalization of MUC7 20-mer was inhibited by divalent cations. Confocal microscopy of cells doubly labeled with MUC7 20-mer and a mitochondrion-specific dye indicated that mitochondria are not the target of MUC7 20-mer for either C. albicans or C. neoformans.
本研究旨在检测MUC7 20肽(N-LAHQKPFIRKSYKCLHKRCR-C;MUC7的32至51位残基,低分子量人唾液粘蛋白,由357个残基组成)的抗菌活性谱,并将其抗真菌特性与唾液组蛋白5(Hsn-5)进行比较。我们还研究了该20肽的二级结构及其抗真菌作用的可能机制。我们的结果表明,MUC7 20肽在微摩尔浓度下对多种真菌以及革兰氏阳性和革兰氏阴性细菌均显示出强大的杀伤活性。MUC7 20肽和Hsn-5对白色念珠菌和新型隐球菌的时间依赖性杀伤表明MUC7 20肽和Hsn-5在杀伤率上存在差异。二级结构预测显示,MUC7 20肽形成具有明显亲水和疏水表面的两亲性螺旋(这一特征与抗菌活性相关)。与Hsn-5相比,MUC7 20肽对白色念珠菌的杀真菌活性似乎与真菌细胞代谢活性无关,低温(4℃)下以及存在线粒体系统氧化磷酸化抑制剂时其杀伤效力就证明了这一点。荧光显微镜检查显示MUC7