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牙菌斑对人唾液MUC5B的蛋白水解降解作用。

Proteolytic degradation of human salivary MUC5B by dental biofilms.

作者信息

Wickström Claes, Herzberg Mark C, Beighton David, Svensäter Gunnel

机构信息

Department of Oral Biology, Faculty of Odontology, Malmö University, Malmö, Sweden.

Mucosal and Vaccine Research Center, Minneapolis VA Medical Center, Minneapolis, MN 55417, USA.

出版信息

Microbiology (Reading). 2009 Sep;155(Pt 9):2866-2872. doi: 10.1099/mic.0.030536-0. Epub 2009 Jun 25.

Abstract

The degradation of complex substrates, like salivary mucins, requires an arsenal of glycosidases and proteases to sequentially degrade the oligosaccharides and polypeptide backbone. The mucin MUC5B is a complex oligomeric glycoprotein, heterogeneous in molecular mass (14-40 x 10(6) Da), with a diverse repertoire of oligosaccharides, differing in composition and charge. The aim of this study was to investigate whether proteolytic degradation of the mucin polypeptide backbone could be identified and if cooperation of dental biofilm bacteria was required. Cooperative bacteria-mediated proteolysis of MUC5B was determined by comparing individual species and mixed consortia of strains isolated from supragingival plaque, and freshly harvested supragingival plaque. Proteolytic activity was analysed using fluorescent labelled substrate and by visualizing mucin degradation by SDS-PAGE. Dental plaque degraded the polypeptide backbone of the salivary MUC5B mucin. The mucin was also degraded by a specific consortium of isolated species from supragingival plaque, although individual species and other consortia did not. Certain bacteria in supragingival dental plaque therefore cooperate as a consortium to proteolyse human salivary MUC5B and hydrolyse glycosides.

摘要

复杂底物(如唾液粘蛋白)的降解需要一系列糖苷酶和蛋白酶来依次降解寡糖和多肽主链。粘蛋白MUC5B是一种复杂的寡聚糖蛋白,分子量不均一(14 - 40×10⁶ Da),具有多种组成和电荷不同的寡糖。本研究的目的是调查是否能鉴定出粘蛋白多肽主链的蛋白水解降解,以及是否需要牙菌斑细菌的协同作用。通过比较从龈上菌斑分离的单个菌株和混合菌株以及新鲜采集的龈上菌斑,来确定细菌介导的MUC5B协同蛋白水解作用。使用荧光标记底物并通过SDS - PAGE观察粘蛋白降解来分析蛋白水解活性。牙菌斑降解了唾液MUC5B粘蛋白的多肽主链。虽然单个菌株和其他混合菌株不能,但来自龈上菌斑的特定混合菌株也能降解粘蛋白。因此,龈上牙菌斑中的某些细菌作为一个协同群体共同作用,对人唾液MUC5B进行蛋白水解并水解糖苷。

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