Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, São Paulo, Brazil.
Departamento de Química Orgânica, Universidade Estadual de Campinas (UNICAMP), Campinas, Brazil.
PLoS Pathog. 2021 Aug 16;17(8):e1009808. doi: 10.1371/journal.ppat.1009808. eCollection 2021 Aug.
Type IV pili (T4P) are thin and flexible filaments found on the surface of a wide range of Gram-negative bacteria that undergo cycles of extension and retraction and participate in a variety of important functions related to lifestyle, defense and pathogenesis. During pilus extensions, the PilB ATPase energizes the polymerization of pilin monomers from the inner membrane. In Xanthomonas citri, two cytosolic proteins, PilZ and the c-di-GMP receptor FimX, are involved in the regulation of T4P biogenesis through interactions with PilB. In vivo fluorescence microscopy studies show that PilB, PilZ and FimX all colocalize to the leading poles of X. citri cells during twitching motility and that this colocalization is dependent on the presence of all three proteins. We demonstrate that full-length PilB, PilZ and FimX can interact to form a stable complex as can PilB N-terminal, PilZ and FimX C-terminal fragments. We present the crystal structures of two binary complexes: i) that of the PilB N-terminal domain, encompassing sub-domains ND0 and ND1, bound to PilZ and ii) PilZ bound to the FimX EAL domain within a larger fragment containing both GGDEF and EAL domains. Evaluation of PilZ interactions with PilB and the FimX EAL domain in these and previously published structures, in conjunction with mutagenesis studies and functional assays, allow us to propose an internally consistent model for the PilB-PilZ-FimX complex and its interactions with the PilM-PilN complex in the context of the inner membrane platform of the X. citri Type IV pilus.
IV 型菌毛(T4P)是一种广泛存在于革兰氏阴性菌表面的细而灵活的细丝,经历着延伸和回缩的循环,并参与了与生活方式、防御和发病机制相关的各种重要功能。在菌毛延伸过程中,PilB ATP 酶为质膜内的菌毛单体聚合提供能量。在柑橘黄单胞菌中,两个细胞质蛋白,PilZ 和 c-di-GMP 受体 FimX,通过与 PilB 的相互作用参与 T4P 生物发生的调节。体内荧光显微镜研究表明,在翻滚运动过程中,PilB、PilZ 和 FimX 都聚集在柑橘黄单胞菌细胞的前极,并且这种聚集依赖于这三种蛋白质的存在。我们证明全长 PilB、PilZ 和 FimX 可以相互作用形成稳定的复合物,而 PilB N 端、PilZ 和 FimX C 端片段也可以相互作用形成稳定的复合物。我们提出了两个二元复合物的晶体结构:i)PilB N 端结构域,包含 ND0 和 ND1 亚结构域,与 PilZ 结合,ii)PilZ 与包含 GGDEF 和 EAL 结构域的更大片段中的 FimX EAL 结构域结合。在这些和以前发表的结构中,对 PilZ 与 PilB 和 FimX EAL 结构域的相互作用进行评估,结合突变研究和功能测定,使我们能够提出 PilB-PilZ-FimX 复合物及其与 X 内部膜平台上的 PilM-PilN 复合物相互作用的一致模型。柑橘黄单胞菌 IV 型菌毛。