Department of Physical Chemistry, Indian Association for the Cultivation of Science, Jadavpur, 700032 Kolkata, India.
Department of Bioengineering, Rice University, Houston, TX 77030.
Proc Natl Acad Sci U S A. 2018 Nov 13;115(46):E10822-E10829. doi: 10.1073/pnas.1810622115. Epub 2018 Oct 26.
A wide range of mutations in the kinesin motor Kif5A have been linked to a neuronal disorder called hereditary spastic paraplegia (HSP). The position of these mutations can vary, and a range of different motile behaviors have been observed, indicating that the HSP mutants can alter distinct aspects of kinesin mechanochemistry. While focusing on four key HSP-associated mutants, this study examined the structural and dynamic perturbations that arise from these mutations using a series of different computational methods, ranging from bioinformatics analyses to all-atom simulations, that account for solvent effects explicitly. We show that two catalytic domain mutations (R280S and K253N) reduce the microtubule (MT) binding affinity of the kinesin head domains appreciably, while N256S has a much smaller impact. Bioinformatics analysis suggests that the stalk mutation A361V perturbs motor dimerization. Subsequent integration of these effects into a coarse-grained structure-based model of dimeric kinesin revealed that the order-disorder transition of the neck linker is substantially affected, indicating a hampered directionality and processivity of kinesin. The present analyses therefore suggest that, in addition to kinesin-MT binding and coiled-coil dimerization, HSP mutations affecting motor stepping transitions and processivity can lead to disease.
广泛的驱动蛋白 Kif5A 突变与一种称为遗传性痉挛性截瘫 (HSP) 的神经元疾病有关。这些突变的位置可能会有所不同,并且观察到了一系列不同的运动行为,这表明 HSP 突变体可以改变驱动蛋白机械化学的不同方面。本研究聚焦于四个关键的 HSP 相关突变体,使用一系列不同的计算方法(从生物信息学分析到全原子模拟)来研究这些突变引起的结构和动态扰动,这些方法明确考虑了溶剂效应。我们表明,两个催化结构域突变 (R280S 和 K253N) 显著降低了驱动蛋白头部结构域与微管 (MT) 的结合亲和力,而 N256S 的影响要小得多。生物信息学分析表明,茎突变 A361V 会扰乱马达二聚体化。随后,将这些效应整合到二聚体驱动蛋白的粗粒化结构模型中,揭示出颈环的有序-无序转变受到了很大影响,表明驱动蛋白的方向性和连续性受到阻碍。因此,目前的分析表明,除了驱动蛋白-MT 结合和卷曲螺旋二聚化之外,影响马达步进转变和连续性的 HSP 突变也可能导致疾病。