Hodges Alex R, Krementsova Elena B, Trybus Kathleen M
Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, Vermont, 05405.
Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, Vermont, 05405.
J Biol Chem. 2007 Sep 14;282(37):27192-27197. doi: 10.1074/jbc.M703968200. Epub 2007 Jul 18.
The processive motor myosin V has a high affinity for actin in the weak binding states when compared with non-processive myosins. Here we test whether this feature is essential for myosin V to walk processively along an actin filament. The net charge of loop 2, a surface loop implicated in the initial weak binding between myosin and actin, was increased or decreased to correspondingly change the affinity of myosin V for actin in the weak binding state, without changing the velocity of movement. Processive run lengths of single molecules were determined by total internal reflection fluorescence microscopy. Reducing the net positive charge of loop 2 significantly decreased both the affinity of myosin V for actin and the processive run length. Conversely, the addition of positive charge to loop 2 increased actin affinity and processive run length. We hypothesize that a high affinity for actin allows the detached head of a stepping myosin V to find its next actin binding site more quickly, thus decreasing the probability of run termination.
与非持续性肌球蛋白相比,持续性运动的肌球蛋白V在弱结合状态下对肌动蛋白具有高亲和力。在此,我们测试这一特性对于肌球蛋白V沿肌动蛋白丝进行持续性移动是否至关重要。环2是一个表面环,与肌球蛋白和肌动蛋白之间最初的弱结合有关,其净电荷增加或减少,相应地改变了肌球蛋白V在弱结合状态下对肌动蛋白的亲和力,而不改变移动速度。通过全内反射荧光显微镜确定单分子的持续性运行长度。降低环2的净正电荷显著降低了肌球蛋白V对肌动蛋白的亲和力以及持续性运行长度。相反,向环2添加正电荷增加了对肌动蛋白的亲和力和持续性运行长度。我们推测,对肌动蛋白的高亲和力使步进中的肌球蛋白V的脱离头部能够更快地找到其下一个肌动蛋白结合位点,从而降低运行终止的概率。