Department of Biological Sciences, Graduate School of Science, Osaka University, Toyonaka, Osaka, Japan.
Traffic. 2009 Nov;10(11):1647-54. doi: 10.1111/j.1600-0854.2009.00975.x. Epub 2009 Aug 10.
Several mammalian kinesin motor proteins exist as multiple isoforms that arise from alternative splicing of a single gene. However, the roles of many motor protein splice variants remain unclear. The kinesin-3 motor protein KIF1B has alternatively spliced isoforms distinguished by the presence or absence of insertion sequences in the conserved amino-terminal region of the protein. The insertions are located in the loop region containing the lysine-rich cluster, also known as the K-loop, and in the hinge region adjacent to the motor domain. To clarify the functions of these alternative splice variants of KIF1B, we examined the biochemical properties of recombinant KIF1B with and without insertion sequences. In a microtubule-dependent ATPase assay, KIF1B variants that contained both insertions had higher activity and affinity for microtubules than KIF1B variants that contained no insertions. Mutational analysis of the K-loop insertion revealed that variants with a longer insertion sequence at this site had higher activity. However, the velocity of movement in motility assays was similar between KIF1B with and without insertion sequences. Our results indicate that splicing isoforms of KIF1B that vary in their insertion sequences have different motor activities.
几种哺乳动物的驱动蛋白运动蛋白以多种同工型存在,这些同工型是由单个基因的选择性剪接产生的。然而,许多运动蛋白剪接变体的作用仍然不清楚。驱动蛋白-3 运动蛋白 KIF1B 具有不同的同工型,这些同工型的区别在于蛋白质保守的氨基末端区域是否存在插入序列。插入序列位于包含富含赖氨酸的簇的环区,也称为 K 环,以及与马达结构域相邻的铰链区。为了阐明 KIF1B 的这些选择性剪接变体的功能,我们研究了含有和不含有插入序列的重组 KIF1B 的生化特性。在微管依赖的 ATP 酶测定中,含有两个插入序列的 KIF1B 变体的活性和对微管的亲和力均高于不含有插入序列的 KIF1B 变体。对 K 环插入的突变分析表明,该位点具有更长插入序列的变体具有更高的活性。然而,在运动学测定中,有和没有插入序列的 KIF1B 的运动速度相似。我们的结果表明,KIF1B 的剪接同工型在其插入序列上的变化具有不同的运动活性。