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粗糙脉孢菌NcKin3(一种具有异常持续运动性的驱动蛋白)运动结构域的X射线结构及与微管的相互作用

X-ray structure and microtubule interaction of the motor domain of Neurospora crassa NcKin3, a kinesin with unusual processivity.

作者信息

Marx Alexander, Müller Jens, Mandelkow Eva-Maria, Woehlke Günther, Bouchet-Marquis Cedric, Hoenger Andreas, Mandelkow Eckhard

机构信息

Max-Planck-Unit for Structural Molecular Biology, Notkestrasse 85, 22607 Hamburg, Germany.

出版信息

Biochemistry. 2008 Feb 19;47(7):1848-61. doi: 10.1021/bi701483h. Epub 2008 Jan 19.

Abstract

Neurospora crassa kinesin NcKin3 belongs to a unique fungal-specific subgroup of small Kinesin-3-related motor proteins. One of its functions appears to be the transport of mitochondria along microtubules. Here, we present the X-ray structure of a C-terminally truncated monomeric construct of NcKin3 comprising the motor domain and the neck linker, and a 3-D image reconstruction of this motor domain bound to microtubules, by cryoelectron microscopy. The protein contains Mg.ADP bound to the active site, yet the structure resembles an ATP-bound state. By comparison with structures of the Kinesin-3 motor Kif1A in different nucleotide states (Kikkawa, M. et al. (2001) Nature (London, U.K.) 411, 439-445), the NcKin3 structure corresponds to the AMPPCP complex of Kif1A rather than the AMPPNP complex. NcKin3-specific differences in the coordination of the nucleotide and asymmetric interactions between adjacent molecules in the crystal are discussed in the context of the unusual kinetics of the dimeric wild-type motor and the monomeric construct used for crystal structure analysis. The NcKin3 motor decorates microtubules at a stoichiometry of one head per alphabeta-tubulin heterodimer, thereby forming an axial periodicity of 8 nm. In spite of unusual extensions at the N-terminus and within flexible loops L2, L8a, and L12 (corresponding to the K-loop of monomeric kinesins), the microtubule binding geometry is similar to that of other members of the kinesin family.

摘要

粗糙脉孢菌驱动蛋白NcKin3属于小驱动蛋白-3相关运动蛋白中一个独特的真菌特异性亚组。它的功能之一似乎是沿着微管运输线粒体。在这里,我们展示了NcKin3的C端截短单体构建体的X射线结构,该构建体包含运动结构域和颈部连接体,以及通过冷冻电子显微镜对该与微管结合的运动结构域进行的三维图像重建。该蛋白在活性位点结合有Mg.ADP,但结构类似于ATP结合状态。通过与处于不同核苷酸状态的驱动蛋白-3运动蛋白Kif1A的结构进行比较(Kikkawa, M.等人,(2001)《自然》(英国伦敦)411, 439 - 445),NcKin3结构对应于Kif1A的AMPPCP复合物而非AMPPNP复合物。在二聚体野生型运动蛋白和用于晶体结构分析的单体构建体的异常动力学背景下,讨论了晶体中核苷酸配位和相邻分子间不对称相互作用的NcKin3特异性差异。NcKin3运动蛋白以每αβ-微管蛋白异二聚体一个头部的化学计量比修饰微管,从而形成8nm的轴向周期性。尽管在N端以及柔性环L2、L8a和L12(对应于单体驱动蛋白的K环)内有异常延伸,但微管结合几何形状与驱动蛋白家族其他成员相似。

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