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二聚体驱动蛋白的晶体结构及其对微管依赖性运动的影响。

The crystal structure of dimeric kinesin and implications for microtubule-dependent motility.

作者信息

Kozielski F, Sack S, Marx A, Thormählen M, Schönbrunn E, Biou V, Thompson A, Mandelkow E M, Mandelkow E

机构信息

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

出版信息

Cell. 1997 Dec 26;91(7):985-94. doi: 10.1016/s0092-8674(00)80489-4.

Abstract

The dimeric form of the kinesin motor and neck domain from rat brain with bound ADP has been solved by X-ray crystallography. The two heads of the dimer are connected via a coiled-coil alpha-helical interaction of their necks. They are broadly similar to one another; differences are most apparent in the head-neck junction and in a moderate reorientation of the neck helices in order to adopt to the coiled-coil conformation. The heads show a rotational symmetry (approximately 120 degrees) about an axis close to that of the coiled-coil. This arrangement is unexpected since it is not compatible with the microtubule lattice. In this arrangement, the two heads of a kinesin dimer could not have equivalent interactions with microtubules.

摘要

通过X射线晶体学解析了来自大鼠脑的带有结合ADP的驱动蛋白运动结构域和颈部结构域的二聚体形式。二聚体的两个头部通过其颈部的卷曲螺旋α-螺旋相互作用相连。它们彼此大致相似;差异在头部-颈部连接处以及颈部螺旋为适应卷曲螺旋构象而进行的适度重新定向中最为明显。头部围绕靠近卷曲螺旋轴的轴呈现旋转对称性(约120度)。这种排列出乎意料,因为它与微管晶格不兼容。在这种排列中,驱动蛋白二聚体的两个头部与微管不可能有等效的相互作用。

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