Hirose K, Lockhart A, Cross R A, Amos L A
Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.
Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9539-44. doi: 10.1073/pnas.93.18.9539.
Kinesin and ncd motor proteins are homologous in sequence yet move in opposite directions along microtubules. We have previously shown that monomeric kinesin and ncd bind in the same orientation on equivalent sites relative to the ends of tubulin sheets of known polarity. We now report cryoelectron microscope images of 16-protofilament microtubules decorated with both single- and double-headed kinesin and double-headed ncd. Three-dimensional density maps and difference maps show that, in adenosine 5'-[beta,gamma-imido]triphosphate, both dimeric motors bind tightly to microtubules via one head, leaving the other free, though apparently in a fixed position. The attached heads of dimers bind to tubulin in the same way as single kinesin heads. The second heads are connected to the tops of the first but, whereas the second kinesin head is closely associated with the first, pairs of ncd heads are splayed apart. There is also a distinct difference in orientation: the second kinesin head is tilted toward the microtubule plus end, while the second head of ncd points toward the minus end.
驱动蛋白和ncd运动蛋白在序列上具有同源性,但却沿微管向相反方向移动。我们之前已经表明,单体驱动蛋白和ncd相对于已知极性的微管蛋白片层末端,以相同的方向结合在等效位点上。我们现在报告用单头和双头驱动蛋白以及双头ncd修饰的16原纤维微管的冷冻电子显微镜图像。三维密度图和差异图显示,在5'-[β,γ-亚氨基]三磷酸腺苷中,两种二聚体马达都通过一个头部紧密结合到微管上,另一个头部则处于自由状态,不过显然处于固定位置。二聚体的附着头部与微管蛋白的结合方式与单个驱动蛋白头部相同。第二个头部连接到第一个头部的顶部,然而,第二个驱动蛋白头部与第一个紧密相连,而ncd头部对则呈展开状。在方向上也存在明显差异:第二个驱动蛋白头部向微管正端倾斜,而ncd的第二个头部指向负端。