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白色念珠菌脱落的Msb2和宿主黏蛋白影响唾液Hst 5的杀念珠菌活性。

Candida albicans Shed Msb2 and Host Mucins Affect the Candidacidal Activity of Salivary Hst 5.

作者信息

Puri Sumant, Friedman Justin, Saraswat Darpan, Kumar Rohitashw, Li Rui, Ruszaj Donna, Edgerton Mira

机构信息

Department of Oral Biology, School of Dental Medicine, University at Buffalo, Buffalo, NY 14214, USA.

Department of Pharmaceutical Sciences, University at Buffalo, Buffalo, NY 14214, USA.

出版信息

Pathogens. 2015 Oct 30;4(4):752-63. doi: 10.3390/pathogens4040752.

Abstract

Salivary Histatin 5 (Hst 5) is an antimicrobial peptide that exhibits potent antifungal activity towards Candida albicans, the causative agent of oral candidiasis. However, it exhibits limited activity in vivo, largely due to inactivation by salivary components of both host and pathogen origin. Proteins secreted by C. albicans during infection such as secreted aspartyl proteases (Saps) and shed mucin Msb2 can reduce Hst 5 activity; and human salivary mucins, while suggested to protect Hst 5 from proteolytic degradation, can entrap peptides into mucin gels, thereby reducing bioavailability. We show here that Sap6 that is secreted during hyphal growth reduces Hst 5 activity, most likely a result of proteolytic degradation of Hst 5 since this effect is abrogated with heat inactivated Sap 6. We further show that just like C. albicans shedding Msb2, mammalian mucins, fetuin and porcine gut mucin (that is related to salivary mucins), also reduce Hst 5 activity. However, we identify mucin-like protein-induced changes in C. albicans cell morphology and aggregation patterns, suggesting that the effect of such proteins on Hst 5 cannot be interpreted independently of their effect on yeast cells.

摘要

唾液组蛋白5(Hst 5)是一种抗菌肽,对口腔念珠菌病的病原体白色念珠菌具有强大的抗真菌活性。然而,它在体内的活性有限,这主要是由于宿主和病原体来源的唾液成分使其失活。白色念珠菌在感染过程中分泌的蛋白质,如分泌天冬氨酸蛋白酶(Saps)和脱落黏蛋白Msb2,可降低Hst 5的活性;而人类唾液黏蛋白虽然被认为可保护Hst 5免受蛋白水解降解,但能将肽截留到黏蛋白凝胶中,从而降低其生物利用度。我们在此表明,菌丝生长过程中分泌的Sap6可降低Hst 5的活性,这很可能是Hst 5被蛋白水解降解的结果,因为热灭活的Sap 6可消除这种作用。我们进一步表明,与白色念珠菌脱落Msb2一样,哺乳动物黏蛋白、胎球蛋白和猪肠黏蛋白(与唾液黏蛋白相关)也会降低Hst 5的活性。然而,我们发现黏蛋白样蛋白会引起白色念珠菌细胞形态和聚集模式的变化,这表明此类蛋白对Hst 5的影响不能独立于其对酵母细胞的影响来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/460a/4693163/ebe7d79ab94a/pathogens-04-00752-g001.jpg

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