Burgess Stan, Walker Matt, Wang Fei, Sellers James R, White Howard D, Knight Peter J, Trinick John
Astbury Centre for Structural Molecular Biology and School of Biomedical Sciences, University of Leeds, Leeds, UK.
J Cell Biol. 2002 Dec 23;159(6):983-91. doi: 10.1083/jcb.200208172.
We have used electron microscopy and single-particle image processing to study head conformation in myosin V molecules. We find that in the presence of ATP, many heads have a sharply angled conformation that is rare in its absence. The sharply angled conformation is similar to a myosin II atomic structure proposed to mimic the prepower stroke state. The leading head in molecules attached to actin by both heads has a similar conformation, but is also sharply angled in a second plane by tethering through the trail head. The lead head lever joins the motor domain approximately 5 nm axially from where it joins the trail motor. These positions locate the converter subdomain and show the lead motor is in the prepower stroke conformation. Tethering by the trail head places the lead head motor domain at the correct axial position along the actin for binding, but at the wrong orientation. Attachment is achieved either by bending the lead head lever throughout its length or at the pliant point. The microscopy shows that most of the walking stride is produced by changes in lever angle brought about by converter movement, but is augmented by distortion produced by thermal energy.
我们利用电子显微镜和单颗粒图像处理技术来研究肌球蛋白V分子的头部构象。我们发现,在有ATP存在的情况下,许多头部呈现出一种锐角构象,而在没有ATP时这种构象很少见。这种锐角构象类似于一种被认为模拟预动力冲程状态的肌球蛋白II原子结构。通过两个头部与肌动蛋白相连的分子中的领头头部具有类似的构象,但通过拖尾头部的系链作用,它在第二个平面上也呈锐角。领头头部杠杆与运动结构域的连接点在轴向上距离它与拖尾运动结构域的连接点约5纳米。这些位置确定了转换器亚结构域的位置,并表明领头运动结构域处于预动力冲程构象。拖尾头部的系链作用使领头头部运动结构域在沿着肌动蛋白的正确轴向位置上用于结合,但方向错误。通过使领头头部杠杆在其整个长度上弯曲或在柔韧点处弯曲来实现附着。显微镜观察表明,大部分行走步幅是由转换器运动引起的杠杆角度变化产生的,但热能产生的变形会增强这种步幅。