Chin Ko-Hsin, Kuo Wei-Ting, Yu Yu-Jen, Liao Yi-Ting, Yang Ming-Te, Chou Shan-Ho
Agricultural Biotechnology Center, National Chung Hsing University, Taichung 40227, Taiwan.
Acta Crystallogr D Biol Crystallogr. 2012 Oct;68(Pt 10):1380-92. doi: 10.1107/S0907444912030594. Epub 2012 Sep 18.
Cyclic di-GMP (c-di-GMP) is a novel secondary-messenger molecule that is involved in regulating a plethora of important bacterial activities through binding to an unprecedented array of effectors. Proteins with a canonical PilZ domain that bind c-di-GMP play crucial roles in regulating flagellum-based motility. In contrast, noncanonical type II PilZ domains that do not effectively bind c-di-GMP regulate twitching motility, which is dependent on type IV pili (T4P). Recent data indicate that T4P biogenesis is initiated via the interaction of a noncanonical type II PilZ protein with the GGDEF/EAL-domain protein FimX and the pilus motor protein PilB at high c-di-GMP concentrations. However, the molecular details of such interactions remain to be elucidated. In this manuscript, the first hetero-complex crystal structure between a type II PilZ protein and the EAL domain of the FimX protein (FimX(EAL)) from Xanthomonas campestris pv. campestris (Xcc) in the presence of c-di-GMP is reported. This work reveals two novel conformations of monomeric c-di-GMP in the XccFimX(EAL)-c-di-GMP and XccFimX(EAL)-c-di-GMP-XccPilZ complexes, as well as a unique interaction mode of a type II PilZ domain with FimX(EAL). These findings indicate that c-di-GMP is sufficiently flexible to adjust its conformation to match the corresponding recognition motifs of different cognate effectors. Together, these results represent a first step towards an understanding of how T4P biogenesis is controlled by c-di-GMP at the molecular level and also of the ability of c-di-GMP to bind to a wide variety of effectors.
环二鸟苷酸(c-di-GMP)是一种新型的第二信使分子,它通过与一系列前所未有的效应器结合,参与调节众多重要的细菌活动。具有与c-di-GMP结合的典型PilZ结构域的蛋白质在调节基于鞭毛的运动中起着关键作用。相比之下,不能有效结合c-di-GMP的非典型II型PilZ结构域则调节依赖于IV型菌毛(T4P)的颤动运动。最近的数据表明,在高c-di-GMP浓度下,非典型II型PilZ蛋白与GGDEF/EAL结构域蛋白FimX以及菌毛运动蛋白PilB相互作用,启动T4P生物合成。然而,此类相互作用的分子细节仍有待阐明。在本论文中,报道了来自野油菜黄单胞菌野油菜致病变种(Xcc)的II型PilZ蛋白与FimX蛋白的EAL结构域(FimX(EAL))在c-di-GMP存在下的首个异源复合物晶体结构。这项工作揭示了XccFimX(EAL)-c-di-GMP和XccFimX(EAL)-c-di-GMP-XccPilZ复合物中单体c-di-GMP的两种新构象,以及II型PilZ结构域与FimX(EAL)的独特相互作用模式。这些发现表明,c-di-GMP具有足够的灵活性来调整其构象,以匹配不同同源效应器的相应识别基序。总之,这些结果代表了在分子水平上理解c-di-GMP如何控制T4P生物合成以及c-di-GMP与多种效应器结合能力的第一步。