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Virulence mechanisms used in the pathogenesis of periodontal diseases caused by Porphyromonas gingivalis

机译:卟啉核糖菌引起的牙周病发病机制的毒力机制

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Periodontal diseases are characterized by progressive inflammation that destroys the tooth-supporting tissues, leading to gum bleeding and tooth loss. Porphyromonas gingivalis is considered one of the main etiological agents responsible for the initiation and progression of chronic periodontitis. This gram-negative, anaerobic bacterium is a part of a multi-species oral biofilm. P. gingivalis does not have the full pathway of protoporphyrin IX synthesis, nor does it produce siderophores. Therefore, for survival and proliferation, it requires heme as a source of iron and protoporphyrin IX. In order to obtain heme, P. gingivalis uses a number of mechanisms that affect the ability of this bacterium to initiate a pathological condition. This review presents the current knowledge regarding the best-known and characterized systems involved in heme acquisition by P. gingivalis. We focused on processes occurring in the initial states of infection, where gingipain, hemagglutinins, and hemolysins play a crucial role. The mechanisms encoded by hmu, iht and hus operons, including proteins with hemophore-like properties, as well as TonB-dependent outer membrane receptors are described. We present their function and participation in the progression of the infection. In addition, we describe mechanisms produced by P. gingivalis and other periodontopathogens in synergistic processes promoting the growth and virulence of P. gingivalis. We also describe processes regulating iron and heme homeostasis, including the homolog of the Fur protein, the two-component system HaeSR, as well as the OxyR, SigH, and PgDps proteins.
机译:牙周病的特征在于逐渐炎症,摧毁牙齿支持组织,导致牙龈出血和牙齿损失。 Porphyromonas Gingivalis被认为是负责慢性牙周炎的起始和进展的主要病因引发剂之一。这种革兰氏阴性厌氧细菌是多物种口服生物膜的一部分。 P. Gingivalis没有不同的原子卟啉IX合成途径,也不是它产生的散发体。因此,为了生存和增殖,它需要血红素作为铁和原生素IX的来源。为了获得血红素,P.Gingivalis使用一些影响该细菌能力引发病理状况的机制。本综述列示了关于P. Gingivalis涉及血红素采集所涉及的最着名和特征系统的现有知识。我们专注于在感染初始状态下发生的过程,其中Gingipain,血凝素和溶血素发挥着至关重要的作用。描述了HMU,IHT和HUS操纵子编码的机制,包括具有血栓多属性的蛋白质,以及肾脏依赖性外膜受体。我们提出了他们的功能和参与感染的进展。此外,我们描述了在协同过程中促进P. Gingivalis的生长和毒力的协同过程中P.Gingivalis和其他牙周病异常产生的机制。我们还描述了调节铁和血红素稳态的过程,包括毛皮蛋白的同源物,双组分系统HaESR,以及oxyr,叹息和PGDPS蛋白。

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