Lee Sung Haeng, Kerff Frederic, Chereau David, Ferron François, Klug Alexandra, Dominguez Roberto
Department of Physiology, University of Pennsylvania School of Medicine, 3700 Hamilton Walk, Philadelphia, PA 19104, USA.
Structure. 2007 Feb;15(2):145-55. doi: 10.1016/j.str.2006.12.005.
The adaptor protein missing-in-metastasis (MIM) contains independent F- and G-actin binding domains, consisting, respectively, of an N-terminal 250 aa IRSp53/MIM homology domain (IMD) and a C-terminal WASP-homology domain 2 (WH2). We determined the crystal structures of MIM's IMD and that of its WH2 bound to actin. The IMD forms a dimer, with each subunit folded as an antiparallel three-helix bundle. This fold is related to that of the BAR domain. Like the BAR domain, the IMD has been implicated in membrane binding. Yet, comparison of the structures reveals that the membrane binding surfaces of the two domains have opposite curvatures, which may determine the type of curvature of the interacting membrane. The WH2 of MIM is longer than the prototypical WH2, interacting with all four subdomains of actin. We characterize a similar WH2 at the C terminus of IRSp53 and propose that in these two proteins WH2 performs a scaffolding function.
衔接蛋白转移缺失蛋白(MIM)包含独立的F-肌动蛋白和G-肌动蛋白结合结构域,分别由N端250个氨基酸的IRSp53/MIM同源结构域(IMD)和C端WASP同源结构域2(WH2)组成。我们确定了MIM的IMD及其与肌动蛋白结合的WH2的晶体结构。IMD形成二聚体,每个亚基折叠成反平行的三螺旋束。这种折叠与BAR结构域的折叠有关。与BAR结构域一样,IMD也与膜结合有关。然而,结构比较表明,这两个结构域的膜结合表面具有相反的曲率,这可能决定了相互作用膜的曲率类型。MIM的WH2比典型的WH2长,与肌动蛋白的所有四个亚结构域相互作用。我们在IRSp53的C端鉴定了一个类似的WH2,并提出在这两种蛋白质中,WH2发挥支架功能。