Suetsugu Shiro, Murayama Kazutaka, Sakamoto Ayako, Hanawa-Suetsugu Kyoko, Seto Azusa, Oikawa Tsukasa, Mishima Chiemi, Shirouzu Mikako, Takenawa Tadaomi, Yokoyama Shigeyuki
Department of Biochemistry, Institute of Medical Science, the University of Tokyo, Shirokanedai, Minato-ku, Tokyo 108-8639, USA.
J Biol Chem. 2006 Nov 17;281(46):35347-58. doi: 10.1074/jbc.M606814200. Epub 2006 Sep 25.
The concave surface of the crescent-shaped Bin-amphiphysin-Rvs (BAR) domain is postulated to bind to the cell membrane to induce membrane deformation of a specific curvature. The Rac binding (RCB) domain/IRSp53-MIM homology domain (IMD) has a dimeric structure that is similar to the structure of the BAR domain; however, the RCB domain/IMD has a "zeppelin-shaped" dimer. Interestingly, the RCB domain/IMD of IRSp53 possesses Rac binding, membrane binding, and actin filament binding abilities. Here we report that the RCB domain/IMD of IRSp53 induces membrane deformation independent of the actin filaments in a Rac-dependent manner. In contrast to the BAR domain, the RCB domain/IMD did not cause long tubulation of the artificial liposomes; however, the Rac binding domain caused the formation of small buds on the liposomal surface. When expressed in cells, the Rac binding domain induced outward protrusion of the plasma membrane in a direction opposite to that induced by the BAR domain. Mapping of the amino acids responsible for membrane deformation suggests that the convex surface of the Rac binding domain binds to the membrane in a Rac-dependent manner, which may explain the mechanism of the membrane deformation induced by the RCB domain/IMD.
新月形的Bin-发动蛋白-Rvs(BAR)结构域的凹面被假定与细胞膜结合,以诱导特定曲率的膜变形。Rac结合(RCB)结构域/IRSp53-MIM同源结构域(IMD)具有与BAR结构域结构相似的二聚体结构;然而,RCB结构域/IMD具有“齐柏林飞艇状”二聚体。有趣的是,IRSp53的RCB结构域/IMD具有Rac结合、膜结合和肌动蛋白丝结合能力。在此我们报告,IRSp53的RCB结构域/IMD以Rac依赖的方式诱导膜变形,且不依赖于肌动蛋白丝。与BAR结构域不同,RCB结构域/IMD不会导致人工脂质体形成长管状;然而,Rac结合结构域会导致脂质体表面形成小芽。当在细胞中表达时,Rac结合结构域诱导质膜向外突出,其方向与BAR结构域诱导的方向相反。对负责膜变形的氨基酸进行定位表明,Rac结合结构域的凸面以Rac依赖的方式与膜结合,这可能解释了RCB结构域/IMD诱导膜变形的机制。