Kozielski F, De Bonis S, Burmeister W P, Cohen-Addad C, Wade R H
Institut de Biologie Structurale (CEA/CNRS), Grenoble, 38027, France.
Structure. 1999 Nov 15;7(11):1407-16. doi: 10.1016/s0969-2126(00)80030-1.
The kinesin superfamily of microtubule-associated motor proteins are important for intracellular transport and for cell division in eukaryotes. Conventional kinesins have the motor domain at the N terminus of the heavy chain and move towards the plus end of microtubules. The ncd protein is necessary for chromosome segregation in meiosis. It belongs to a subfamily of kinesins that have the motor domain at the C terminus and move towards the minus end of microtubules.
The crystal structure of dimeric ncd has been obtained at 2.9 A resolution from crystals with the C222(1) space group, with two independent dimers per asymmetric unit. The motor domains in these dimers are not related by crystallographic symmetry and the two ncd dimers have significantly different conformations. An alpha-helical coiled coil connects, and interacts with, the motor domains.
The ncd protein has a very compact structure, largely due to extended interactions of the coiled coil with the head domains. Despite this, we find that the overall conformation of the ncd dimer can be rotated by as much as 10 degrees away from that of the twofold-symmetric archetypal ncd. The crystal structures of conventional kinesin and of ncd suggest a structural rationale for the reversal of the direction of movement in chimeric kinesins.
微管相关运动蛋白的驱动蛋白超家族对于真核生物中的细胞内运输和细胞分裂至关重要。传统驱动蛋白在重链的N端具有运动结构域,并朝着微管的正端移动。ncd蛋白对于减数分裂中的染色体分离是必需的。它属于驱动蛋白的一个亚家族,其运动结构域位于C端,并朝着微管的负端移动。
已从具有C222(1)空间群的晶体中以2.9埃的分辨率获得了二聚体ncd的晶体结构,每个不对称单元中有两个独立的二聚体。这些二聚体中的运动结构域不具有晶体学对称性,并且两个ncd二聚体具有明显不同的构象。一个α-螺旋卷曲螺旋连接并与运动结构域相互作用。
ncd蛋白具有非常紧凑的结构,这主要归因于卷曲螺旋与头部结构域的广泛相互作用。尽管如此,我们发现ncd二聚体的整体构象可以从双重对称的原型ncd构象旋转多达10度。传统驱动蛋白和ncd的晶体结构为嵌合驱动蛋白运动方向的逆转提供了结构上的理论依据。