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Role of sialidase in glycoprotein utilization by Tannerella forsythia

机译:唾液酸酶在萜蛋白的同源中的作用

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The major bacterial pathogens associated with periodontitis include Tannerella forsythia. We previously discovered that sialic acid stimulates biofilm growth of T. forsythia, and that sialidase activity is key to utilization of sialoconjugate sugars and is involved in host–pathogen interactions in vitro. The aim of this work was to assess the influence of the NanH sialidase on initial biofilm adhesion and growth in experiments where the only source of sialic acid was sialoglycoproteins or human oral secretions. After showing that T. forsythia can utilize sialoglycoproteins for biofilm growth, we showed that growth and initial adhesion with sialylated mucin and fetuin were inhibited two- to threefold by the sialidase inhibitor oseltamivir. A similar reduction (three- to fourfold) was observed with a nanH mutant compared with the wild-type. Importantly, these data were replicated using clinically relevant serum and saliva samples as substrates. In addition, the ability of the nanH mutant to form biofilms on glycoprotein-coated surfaces could be restored by the addition of purified NanH, which we show is able to cleave sialic acid from the model glycoprotein fetuin and, much less efficiently, 9-O-acetylated bovine submaxillary mucin. These data show for the first time that glycoprotein-associated sialic acid is likely to be a key in vivo nutrient source for T. forsythia when growing in a biofilm, and suggest that sialidase inhibitors might be useful adjuncts in periodontal therapy.
机译:与牙周炎相关的主要细菌病原体包括Tannerella连翘。我们以前发现唾液酸刺激生物膜生长,唾液酸酶活性是利用唾液酸糖的关键,并参与体外宿主病原体相互作用。这项工作的目的是评估纳米唾液酸酶对初始生物膜粘附和生长的影响,其中唾液酸的唯一来源是唾液蛋白或人口腔分泌物。在表明T.连续节可以利用唾液蛋白进行生物膜生长,我们表明,通过唾液酸酶抑制剂Oseltamivir抑制了与唾液酸粘蛋白和胎素的生长和初始粘附。与野生型相比,用纳米突变体观察到类似的减少(三到四倍)。重要的是,这些数据通过临床相关的血清和唾液样品作为基质进行复制。此外,纳米突变体在糖蛋白涂覆的表面上形成生物膜的能力可以通过加入纯化的纳米来恢复,我们显示能够从模型糖蛋白蕨类植物中切割唾液酸,并且更加有效地粘合9-O. - 乙酰化牛亚夏粘蛋白。这些数据显示第一次糖蛋白相关的唾液酸可能是在生物膜生长时为连续性的Vivo营养素源的键,并表明唾液酸酶抑制剂可能是牙周治疗中有用的辅助。

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