Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, Avenida Professor Lineu Prestes 748, São Paulo SP 05508-000, Brazil; Departamento de Microbiologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, Avenida Professor Lineu Prestes 1374, São Paulo SP 05508-900, Brazil.
J Mol Biol. 2013 Jun 26;425(12):2174-97. doi: 10.1016/j.jmb.2013.03.021. Epub 2013 Mar 16.
Signal transduction pathways mediated by cyclic-bis(3'→5')-dimeric GMP (c-di-GMP) control many important and complex behaviors in bacteria. C-di-GMP is synthesized through the action of GGDEF domains that possess diguanylate cyclase activity and is degraded by EAL or HD-GYP domains with phosphodiesterase activity. There is mounting evidence that some important c-di-GMP-mediated pathways require protein-protein interactions between members of the GGDEF, EAL, HD-GYP and PilZ protein domain families. For example, interactions have been observed between PilZ and the EAL domain from FimX of Xanthomonas citri (Xac). FimX and PilZ are involved in the regulation of type IV pilus biogenesis via interactions of the latter with the hexameric PilB ATPase associated with the bacterial inner membrane. Here, we present the crystal structure of the ternary complex made up of PilZ, the FimX EAL domain (FimXEAL) and c-di-GMP. PilZ interacts principally with the lobe region and the N-terminal linker helix of the FimXEAL. These interactions involve a hydrophobic surface made up of amino acids conserved in a non-canonical family of PilZ domains that lack intrinsic c-di-GMP binding ability and strand complementation that joins β-sheets from both proteins. Interestingly, the c-di-GMP binds to isolated FimXEAL and to the PilZ-FimXEAL complex in a novel conformation encountered in c-di-GMP-protein complexes in which one of the two glycosidic bonds is in a rare syn conformation while the other adopts the more common anti conformation. The structure points to a means by which c-di-GMP and PilZ binding could be coupled to FimX and PilB conformational states.
环状双(3'→5')-二鸟苷酸(c-di-GMP)介导的信号转导通路控制着细菌中许多重要而复杂的行为。c-di-GMP 通过具有二鸟苷酸环化酶活性的 GGDEF 结构域的作用合成,并通过具有磷酸二酯酶活性的 EAL 或 HD-GYP 结构域降解。越来越多的证据表明,一些重要的 c-di-GMP 介导途径需要 GGDEF、EAL、HD-GYP 和 PilZ 蛋白结构域家族成员之间的蛋白质-蛋白质相互作用。例如,已经观察到 PilZ 与柑橘黄单胞菌(Xac)FimX 的 EAL 结构域之间的相互作用。FimX 和 PilZ 参与通过 PilB 六聚体 ATP 酶与细菌内膜的相互作用来调节 IV 型菌毛生物发生。在这里,我们展示了由 PilZ、FimX EAL 结构域(FimXEAL)和 c-di-GMP 组成的三元复合物的晶体结构。PilZ 主要与 FimXEAL 的叶状区域和 N 端连接螺旋相互作用。这些相互作用涉及由 PilZ 结构域的非典型家族中的保守氨基酸组成的疏水面,该家族缺乏内在的 c-di-GMP 结合能力和连接两个蛋白质β-片层的链互补性。有趣的是,c-di-GMP 以一种在 c-di-GMP-蛋白复合物中遇到的新构象结合到分离的 FimXEAL 和 PilZ-FimXEAL 复合物中,其中两个糖苷键中的一个处于罕见的顺式构象,而另一个则采用更常见的反式构象。该结构指出了一种将 c-di-GMP 和 PilZ 结合与 FimX 和 PilB 构象状态偶联的方法。