School of Biological Sciences, Nanyang Technological University, Singapore 637551.
J Biol Chem. 2011 Jan 28;286(4):2910-7. doi: 10.1074/jbc.M110.196220. Epub 2010 Nov 22.
FimX is a multidomain signaling protein required for type IV pilus biogenesis and twitching motility in the opportunistic pathogen Pseudomonas aeruginosa. FimX is localized to the single pole of the bacterial cell, and the unipolar localization is crucial for the correct assembly of type IV pili. FimX contains a non-catalytic EAL domain that lacks cyclic diguanylate (c-di-GMP) phosphodiesterase activity. It was shown that deletion of the EAL domain or mutation of the signature EVL motif affects the unipolar localization of FimX. However, it was not understood how the C-terminal EAL domain could influence protein localization considering that the localization sequence resides in the remote N-terminal region of the protein. Using hydrogen/deuterium exchange-coupled mass spectrometry, we found that the binding of c-di-GMP to the EAL domain triggers a long-range (∼ca. 70 Å) conformational change in the N-terminal REC domain and the adjacent linker. In conjunction with the observation that mutation of the EVL motif of the EAL domain abolishes the binding of c-di-GMP, the hydrogen/deuterium exchange results provide a molecular explanation for the mediation of protein localization and type IV pilus biogenesis by c-di-GMP through a remarkable allosteric regulation mechanism.
FimX 是一种多功能信号蛋白,对于机会性病原体铜绿假单胞菌的 IV 型菌毛生物发生和扭动运动是必需的。FimX 定位于细菌细胞的单一极,而单极定位对于 IV 型菌毛的正确组装至关重要。FimX 含有一个非催化的 EAL 结构域,该结构域缺乏环二鸟苷酸(c-di-GMP)磷酸二酯酶活性。已经表明,EAL 结构域的缺失或特征性 EVL 基序的突变会影响 FimX 的单极定位。然而,由于定位序列位于蛋白质的远程 N 端区域,因此不理解 C 端 EAL 结构域如何能够影响蛋白质定位。使用氢/氘交换偶联质谱法,我们发现 c-di-GMP 与 EAL 结构域的结合会引发 N 端 REC 结构域和相邻接头的长程(约 70 Å)构象变化。结合 EAL 结构域的 EVL 基序突变会破坏 c-di-GMP 的结合的观察结果,氢/氘交换结果提供了一个分子解释,说明 c-di-GMP 通过一种显著的变构调节机制来介导蛋白质定位和 IV 型菌毛生物发生。