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Mfa4 an Accessory Protein of Mfa1 Fimbriae Modulates Fimbrial Biogenesis Cell Auto-Aggregation and Biofilm Formation in Porphyromonas gingivalis

机译:Mfa4Mfa1菌毛的一种辅助蛋白调节牙龈卟啉单胞菌的膜生物发生细胞自动聚集和生物膜形成。

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摘要

Porphyromonas gingivalis, a gram-negative obligate anaerobic bacterium, is considered to be a key pathogen in periodontal disease. The bacterium expresses Mfa1 fimbriae, which are composed of polymers of Mfa1. The minor accessory components Mfa3, Mfa4, and Mfa5 are incorporated into these fimbriae. In this study, we characterized Mfa4 using genetically modified strains. Deficiency in the mfa4 gene decreased, but did not eliminate, expression of Mfa1 fimbriae. However, Mfa3 and Mfa5 were not incorporated because of defects in posttranslational processing and leakage into the culture supernatant, respectively. Furthermore, the mfa4-deficient mutant had an increased tendency to auto-aggregate and form biofilms, reminiscent of a mutant completely lacking Mfa1. Notably, complementation of mfa4 restored expression of structurally intact and functional Mfa1 fimbriae. Taken together, these results indicate that the accessory proteins Mfa3, Mfa4, and Mfa5 are necessary for assembly of Mfa1 fimbriae and regulation of auto-aggregation and biofilm formation of P. gingivalis. In addition, we found that Mfa3 and Mfa4 are processed to maturity by the same RgpA/B protease that processes Mfa1 subunits prior to polymerization.
机译:革兰氏阴性专性厌氧细菌牙龈卟啉单胞菌被认为是牙周疾病的关键病原体。该细菌表达由Mfa1的聚合物组成的Mfa1菌毛。次要的辅助组件Mfa3,Mfa4和Mfa5并入了这些菌毛。在这项研究中,我们使用转基因菌株表征了Mfa4。 mfa4基因的缺陷减少,但没有消除Mfa1菌毛的表达。但是,由于翻译后加工中的缺陷和渗入培养上清液中的缺陷,未分别加入Mfa3和Mfa5。此外,缺乏mfa4的突变体具有自动聚集并形成生物膜的趋势,这让人想起完全缺乏Mfa1的突变体。值得注意的是,mfa4的互补可恢复结构完整和功能性Mfa1菌毛的表达。综上所述,这些结果表明辅助蛋白Mfa3,Mfa4和Mfa5对于Mfa1菌毛的组装以及调控牙龈卟啉单胞菌的自动聚集和生物膜形成是必需的。此外,我们发现Mfa3和Mfa4由在聚合之前处理Mfa1亚基的同一RgpA / B蛋白酶处理到成熟。

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