Otomo Takanori, Tomchick Diana R, Otomo Chinatsu, Panchal Sanjay C, Machius Mischa, Rosen Michael K
Department of Biochemistry, University of Texas Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, Texas 75390, USA.
Nature. 2005 Feb 3;433(7025):488-94. doi: 10.1038/nature03251. Epub 2005 Jan 5.
The conserved formin homology 2 (FH2) domain nucleates actin filaments and remains bound to the barbed end of the growing filament. Here we report the crystal structure of the yeast Bni1p FH2 domain in complex with tetramethylrhodamine-actin. Each of the two structural units in the FH2 dimer binds two actins in an orientation similar to that in an actin filament, suggesting that this structure could function as a filament nucleus. Biochemical properties of heterodimeric FH2 mutants suggest that the wild-type protein equilibrates between two bound states at the barbed end: one permitting monomer binding and the other permitting monomer dissociation. Interconversion between these states allows processive barbed-end polymerization and depolymerization in the presence of bound FH2 domain. Kinetic and/or thermodynamic differences in the conformational and binding equilibria can explain the variable activity of different FH2 domains as well as the effects of the actin-binding protein profilin on FH2 function.
保守的formin同源结构域2(FH2)可促使肌动蛋白丝成核,并始终与生长中肌动蛋白丝的尖端结合。在此,我们报道了与四甲基罗丹明-肌动蛋白复合的酵母Bni1p FH2结构域的晶体结构。FH2二聚体中的两个结构单元均以与肌动蛋白丝中相似的方向结合两个肌动蛋白,这表明该结构可能起到丝核的作用。异源二聚体FH2突变体的生化特性表明,野生型蛋白在尖端的两种结合状态之间平衡:一种允许单体结合,另一种允许单体解离。这些状态之间的相互转换使得在结合FH2结构域的情况下,尖端能够进行持续性的聚合和解聚。构象和结合平衡中的动力学和/或热力学差异可以解释不同FH2结构域的可变活性以及肌动蛋白结合蛋白原肌球蛋白对FH2功能的影响。