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Nonulosonic acids contribute to the pathogenicity of the oral bacterium Tannerella forsythia

机译:壬酸有助于口腔细菌连翘的致病性

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摘要

Periodontitis is a polymicrobial, biofilm-caused, inflammatory disease affecting the tooth-supporting tissues. It is not only the leading cause of tooth loss worldwide, but can also impact systemic health. The development of effective treatment strategies is hampered by the complicated disease pathogenesis which is best described by a polymicrobial synergy and dysbiosis model. This model classifies the Gram-negative anaerobe Tannerella forsythia as a periodontal pathogen, making it a prime candidate for interference with the disease. Tannerella forsythia employs a protein O-glycosylation system that enables high-density display of nonulosonic acids via the bacterium's two-dimensional crystalline cell surface layer. Nonulosonic acids are sialic acid-like sugars which are well known for their pivotal biological roles. This review summarizes the current knowledge of T. forsythia's unique cell envelope with a focus on composition, biosynthesis and functional implications of the cell surface O-glycan. We have obtained evidence that glycobiology affects the bacterium's immunogenicity and capability to establish itself in the polymicrobial oral biofilm. Analysis of the genomes of different T. forsythia isolates revealed that complex protein O-glycosylation involving nonulosonic acids is a hallmark of pathogenic T. forsythia strains and, thus, constitutes a valuable target for the design of novel anti-infective strategies to combat periodontitis.
机译:牙周炎是一种由生物膜引起的由微生物引起的炎症性疾病,会影响到牙齿支撑组织。它不仅是全球范围内牙齿脱落的主要原因,而且还会影响全身健康。有效的治疗策略的发展受到复杂的疾病发病机理的阻碍,而这种疾病的发病机理最好由微生物协同作用和营养不良模型来描述。该模型将革兰氏阴性厌氧性连翘(Tannerella forsythia)归类为牙周病原体,使其成为干扰该疾病的主要候选对象。坦氏连翘使用蛋白质O-糖基化系统,该系统可通过细菌的二维晶体细胞表面层高密度显示壬二酸。非磺酸是类唾液酸糖,以其关键的生物学作用而闻名。这篇综述总结了连翘的独特细胞包膜的当前知识,重点是细胞表面O-聚糖的组成,生物合成和功能含义。我们已经获得证据表明糖生物学影响细菌的免疫原性和在多菌种口腔生物膜中建立自身的能力。对不同的连翘分离株的基因组分析表明,涉及非果酸的复杂蛋白O-糖基化是致病连翘菌株的标志,因此,构成了设计新型抗感染策略以对抗牙周炎的重要目标。

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