Bisbal Mariano, Wojnacki José, Peretti Diego, Ropolo Andrea, Sesma Juliana, Jausoro Ignacio, Cáceres Alfredo
Laboratory of Neurobiology and Cell Biology, Instituto Investigación Médica Mercedes y Martín Ferreyra-Consejo Nacional de Investigaciones Científicas y Técnicas, 5016 Córdoba, Argentina.
J Biol Chem. 2009 Apr 3;284(14):9489-97. doi: 10.1074/jbc.M808586200. Epub 2009 Jan 21.
In this study, we have used a combination of biochemical and molecular biology techniques to demonstrate that the C-terminal tail domain of KIF4 directly interacts with P0, a major protein component of ribosomes. Besides, in dorsal root ganglion neurons, KIF4 and P0, as well as other ribosomal constituents, colocalize in clusters distributed along axons and neuritic tips. RNA interference suppression of KIF4 or expression of KIF4 variants lacking the tail domain or mutations of the ATP-binding site result in accumulation of P0 and other ribosomal proteins at the cell body and in their disappearance from axons. Our results also show one additional function for KIF4 involving an Ezrin-Radixin-Moesin-like domain in the second coiled-coiled region of KIF4. Expression of a KIF4 mutant lacking this domain abolishes the clustering of ribosomal constituents and prevents the anterograde translocation of the cell adhesion molecule L1. Taken together, the present results suggest that by binding to P0 through its tail domain and by using its motor activity, KIF4 is involved in the anterograde trafficking of ribosomal constituents to axons and that by means of its Ezrin-Radixin-Moesin-like domain interacts and transports L1.
在本研究中,我们运用了生物化学和分子生物学技术相结合的方法,以证明KIF4的C末端尾部结构域直接与核糖体的主要蛋白质成分P0相互作用。此外,在背根神经节神经元中,KIF4和P0以及其他核糖体成分共定位于沿轴突和神经突尖端分布的簇中。RNA干扰抑制KIF4或缺乏尾部结构域的KIF4变体的表达或ATP结合位点的突变会导致P0和其他核糖体蛋白在细胞体中积累,并使其从轴突中消失。我们的结果还显示了KIF4的另一个功能,该功能涉及KIF4第二个卷曲螺旋区域中的埃兹蛋白-根蛋白-膜突蛋白样结构域。缺乏该结构域的KIF4突变体的表达消除了核糖体成分的聚集,并阻止了细胞粘附分子L1的顺行转运。综上所述,目前的结果表明,KIF4通过其尾部结构域与P0结合并利用其运动活性,参与核糖体成分向轴突的顺行运输,并且通过其埃兹蛋白-根蛋白-膜突蛋白样结构域与L1相互作用并运输L1。