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The lysine gingipain adhesin domains from Porphyromonasgingivalis interact with erythrocytes and albumin: Structures correlate tofunction

机译:卟啉单胞菌的赖氨酸姜黄素粘附域牙龈与红细胞和白蛋白相互作用:结构与功能

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摘要

The crystal structure of the K1 domain, an adhesin module of the lysine gingipain (Kgp) expressed on the cell surface by the periodontopathic anaerobic bacterium, Porphyromonas gingivalis W83, is compared to the previously determined structures of homologues K2 and K3, all three being representative members of the cleaved adhesin domain family. In the structure of K1, the conformation of the most extensive surface loop is unexpectedly perturbed, perhaps by crystal packing, and is displaced from a previously reported arginine-anchored position observed in K2 and K3. This displacement allows the loop to become free to interact with other proteins; the alternate flipped-out loop conformation is a novel mechanism for interacting with target host proteins, other bacteria, or other gingipain protein domains. Further, the K1 adhesin module, like others, is found to be haemolytic in vitro, and so, functions in erythrocyte recognition thereby contributing to the haemolytic function of Kgp. K1 was also observed to selectively bind to haem-albumin with high affinity, suggesting this domain may be involved in gingipain-mediated haem acquisition from haem-albumin. Therefore, it is most likely that all cleaved adhesin domains of Kgp contribute to the pathogenicity of P. gingivalis in more complex ways than simply mediating bacterial adherence.
机译:将K1结构域的晶体结构与牙周卟啉单胞菌W83的牙周病性厌氧细菌W83在细胞表面表达的赖氨酸姜黄素(Kgp)的粘附素模块进行了比较,这三个结构都具有代表性。裂解的粘附素结构域家族的成员。在K1的结构中,可能通过晶体堆积意外地干扰了最广泛的表面环的构型,并偏离了先前报道的在K2和K3中观察到的精氨酸锚定位置。这种置换使环可以自由地与其他蛋白质相互作用。另一个翻转环构象是与靶宿主蛋白,其他细菌或其他gingipain蛋白结构域相互作用的新机制。此外,发现K1粘附素模块与其他模块一样,在体外具有溶血作用,因此在红细胞识别中起作用,从而有助于Kgp的溶血作用。还观察到K1以高亲和力选择性结合血红蛋白-白蛋白,表明该结构域可能参与了由血红蛋白白蛋白介导的血红素的获取。因此,最有可能的是,所有裂解的Kgp粘附素域都以比简单地介导细菌粘附更为复杂的方式对牙龈卟啉单胞菌的致病性做出了贡献。

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