Department of Biomedical and Molecular Sciences, Queen's University, 18 Stuart St., Rm. 652, Kingston, ON K7L 3 N6, Canada.
Institute for Research in Immunology and Cancer, Département de Médecine, Université de Montréal, P.O. Box 6128, Station Centre-Ville, Montréal, QC H3C 3 J7, Canada.
J Mol Biol. 2014 Aug 26;426(17):2997-3015. doi: 10.1016/j.jmb.2014.05.030. Epub 2014 Jun 17.
The mitotic kinesin motor protein KIF14 is essential for cytokinesis during cell division and has been implicated in cerebral development and a variety of human cancers. Here we show that the mouse KIF14 motor domain binds tightly to microtubules and does not display typical nucleotide-dependent changes in this affinity. It also has robust ATPase activity but very slow motility. A crystal structure of the ADP-bound form of the KIF14 motor domain reveals a dramatically opened ATP-binding pocket, as if ready to exchange its bound ADP for Mg·ATP. In this state, the central β-sheet is twisted ~10° beyond the maximal amount observed in other kinesins. This configuration has only been seen in the nucleotide-free states of myosins-known as the "rigor-like" state. Fitting of this atomic model to electron density maps from cryo-electron microscopy indicates a distinct binding configuration of the motor domain to microtubules. We postulate that these properties of KIF14 are well suited for stabilizing midbody microtubules during cytokinesis.
有丝分裂驱动蛋白 KIF14 是细胞分裂过程中胞质分裂所必需的,它与大脑发育和多种人类癌症有关。在这里,我们发现小鼠 KIF14 运动域与微管紧密结合,并且在亲和力方面没有表现出典型的核苷酸依赖性变化。它还具有强大的 ATP 酶活性,但运动速度非常慢。ADP 结合形式的 KIF14 运动域的晶体结构揭示了一个明显张开的 ATP 结合口袋,好像准备将其结合的 ADP 交换为 Mg·ATP。在这种状态下,中央 β-片层扭曲了~10°,超过了其他驱动蛋白观察到的最大量。这种构象仅在肌球蛋白的无核苷酸状态下可见——称为“刚性样”状态。将该原子模型拟合到冷冻电子显微镜的电子密度图表明,马达域与微管的结合构象明显不同。我们推测,KIF14 的这些特性非常适合在胞质分裂过程中稳定中体微管。