Department of Chemistry, Umeå University, Umeå, SE-901 85, Sweden.
Department of Microbiology, School of Dentistry, Aichi Gakuin University, 1-100 Kusumoto-cho, Chikusa-ku, Nagoya, Aichi, 464-8650, Japan.
Sci Rep. 2018 Jan 29;8(1):1793. doi: 10.1038/s41598-018-20067-z.
Very little is known about how fimbriae of Bacteroidetes bacteria are assembled. To shed more light on this process, we solved the crystal structures of the shaft protein Mfa1, the regulatory protein Mfa2, and the tip protein Mfa3 from the periodontal pathogen Porphyromonas gingivalis. Together these build up part of the Mfa1 fimbria and represent three of the five proteins, Mfa1-5, encoded by the mfa1 gene cluster. Mfa1, Mfa2 and Mfa3 have the same overall fold i.e., two β-sandwich domains. Upon polymerization, the first β-strand of the shaft or tip protein is removed by indigenous proteases. Although the resulting void is expected to be filled by a donor-strand from another fimbrial protein, the mechanism by which it does so is still not established. In contrast, the first β-strand in Mfa2, the anchoring protein, is firmly attached by a disulphide bond and is not cleaved. Based on the structural information, we created multiple mutations in P. gingivalis and analysed their effect on fimbrial polymerization and assembly in vivo. Collectively, these data suggest an important role for the C-terminal tail of Mfa1, but not of Mfa3, affecting both polymerization and maturation of downstream fimbrial proteins.
关于拟杆菌门细菌的菌毛是如何组装的,我们知之甚少。为了更深入地了解这个过程,我们解析了牙周病原体牙龈卟啉单胞菌的轴蛋白 Mfa1、调节蛋白 Mfa2 和尖端蛋白 Mfa3 的晶体结构。这些结构共同构成了 Mfa1 菌毛的一部分,代表了 mfa1 基因簇编码的 5 个蛋白中的 3 个。Mfa1、Mfa2 和 Mfa3 的整体折叠相同,即两个β-三明治结构域。在聚合过程中,轴或尖端蛋白的第一个β-链被内源性蛋白酶去除。虽然预期该空穴会被另一个菌毛蛋白的供体链填充,但填充的机制尚未确定。相比之下,锚定蛋白 Mfa2 中的第一个β-链通过二硫键牢固连接,不会被切割。基于这些结构信息,我们在牙龈卟啉单胞菌中创建了多个突变,并分析了它们对菌毛聚合和体内组装的影响。总的来说,这些数据表明 Mfa1 的 C 末端尾巴对聚合和成熟下游菌毛蛋白都有重要影响,但 Mfa3 的 C 末端尾巴没有影响。