Centre of Protein Science and Crystallography, Department of Biochemistry, Faculty of Science, The Chinese University of Hong Kong, Hong Kong, China.
FASEB J. 2010 Oct;24(10):4020-32. doi: 10.1096/fj.10-155242. Epub 2010 Jun 25.
Flagellar export chaperone FliS prevents premature polymerization of flagellins and is critical for flagellar assembly and bacterial colonization. Previously, a yeast 2-hybrid study identified various FliS-associated proteins in Helicobacter pylori, but the implications of these interactions are not known. Here we demonstrate the biophysical interaction of FliS (HP0753) and the uncharacterized protein HP1076 from H. pylori. HP1076 possesses a cochaperone activity that promotes the folding and chaperone activity of FliS. We further determined the crystal structures of FliS, HP1076, and the binary complex at 2.7, 1.8, and 2.7 Å resolution, respectively. HP1076 adopts a helix-rich bundle structure and interestingly shares a similar fold with a flagellin homologue, hook-associated protein, and FliS. The FliS-HP1076 complex revealed an extensive electrostatic and hydrophobic binding interface, which is distinct from the flagellin binding pocket in FliS. The helical stacking interaction between HP1076 and FliS suggests that HP1076 stabilizes 2 α helices of FliS and therefore the overall structure of the bundle. Our findings provide new insights into flagellar export chaperones and may have implications for other secretion chaperones in the type III secretion system.
鞭毛输出伴侣蛋白 FliS 可防止鞭毛蛋白过早聚合,对于鞭毛组装和细菌定植至关重要。先前的酵母双杂交研究鉴定了幽门螺杆菌中各种与 FliS 相关的蛋白,但这些相互作用的意义尚不清楚。在这里,我们证明了 FliS(HP0753)和幽门螺杆菌中未鉴定的蛋白 HP1076 之间的生物物理相互作用。HP1076 具有共伴侣活性,可促进 FliS 的折叠和伴侣活性。我们进一步确定了 FliS、HP1076 和二元复合物的晶体结构,分辨率分别为 2.7、1.8 和 2.7Å。HP1076 采用富含螺旋的束状结构,有趣的是,它与鞭毛同源物、钩相关蛋白和 FliS 具有相似的折叠。FliS-HP1076 复合物揭示了广泛的静电和疏水结合界面,与 FliS 中的鞭毛结合口袋明显不同。HP1076 和 FliS 之间的螺旋堆积相互作用表明,HP1076 稳定了 FliS 的 2 个α螺旋,从而稳定了整个束状结构。我们的发现为鞭毛输出伴侣蛋白提供了新的见解,可能对 III 型分泌系统中的其他分泌伴侣蛋白具有意义。