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二聚体驱动蛋白颈部结构域的溶液核磁共振谱峰归属和结构。

Solution NMR assignments and structure for the dimeric kinesin neck domain.

机构信息

Department of Molecular and Cell Biology, University of Connecticut, 91 N. Eagleville Road, Storrs, CT, 06269-3125, USA.

Laboratory of Biomolecular Research, Division of Biology and Chemistry, Paul Scherrer Institut, 5232, Villigen, Switzerland.

出版信息

Biomol NMR Assign. 2023 Dec;17(2):301-307. doi: 10.1007/s12104-023-10159-x. Epub 2023 Oct 20.

Abstract

Kinesin is a motor protein, comprised of two heavy and two light chains that transports cargo along the cytoskeletal microtubule filament network. The heavy chain has a neck domain connecting the ATPase motor head responsible for walking along microtubules, with the stalk and subsequent tail domains that bind cargo. The neck domain consists of a coiled coli homodimer with about five heptad repeats, preceded by a linker region that joins to the ATPase head. Here we report H, N, and C NMR assignments and a solution structure for the kinesin neck domain from rat isoform Kif5c. The calculation of the NMR structure of the homodimer was facilitated by unambiguously assigning sidechain NOEs between heptad a and d positions to interchain contacts, since these positions are too far apart to give sidechain contacts in the monomers. The dimeric coiled coil NMR structure is similar to the previously described X-ray structure, whereas the linker region is disordered in solution but contains a short segment with β-strand propensity- the β-linker. Only the coiled coil is protected from solvent exchange, with ∆G values for hydrogen exchange on the order of 4-6 kcal/mol. The high stability of the hydrogen-bonded α-helical structure makes it unlikely that unzippering of the coiled coil is involved in kinesin walking. Rather, the linker region serves as a flexible hinge between the kinesin head and neck.

摘要

驱动蛋白是一种马达蛋白,由两条重链和两条轻链组成,可沿着细胞骨架微管丝网络运输货物。重链具有一个连接负责沿微管行走的 ATP 酶马达头部的颈域,以及与货物结合的茎和随后的尾部域。颈域由一个卷曲的螺旋同二聚体组成,大约有五个七肽重复序列,前面是一个连接到 ATP 酶头部的接头区域。在这里,我们报道了来自大鼠同工型 Kif5c 的驱动蛋白颈域的 H、N 和 C NMR 分配和溶液结构。由于这些位置相距太远,无法在单体中给出侧链接触,因此通过明确分配七肽 a 和 d 位置之间的侧链 NOE 来确定同二聚体的 NMR 结构,从而促进了同二聚体的计算。二聚体卷曲螺旋 NMR 结构与先前描述的 X 射线结构相似,而接头区域在溶液中无序,但包含一个具有 β-链倾向的短片段 - β-接头。只有卷曲螺旋受到溶剂交换的保护,氢交换的 ∆G 值约为 4-6 kcal/mol。氢键 α-螺旋结构的高度稳定性使得卷曲螺旋的解旋不太可能参与驱动蛋白的行走。相反,接头区域充当驱动蛋白头部和颈部之间的柔性铰链。

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