Liang Yun, Yu Wei, Li Yan, Yang Zhenye, Yan Xiumin, Huang Qiongping, Zhu Xueliang
Laboratory of Molecular Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, China.
J Cell Biol. 2004 Feb 16;164(4):557-66. doi: 10.1083/jcb.200308058.
Nudel and Lis1 appear to regulate cytoplasmic dynein in neuronal migration and mitosis through direct interactions. However, whether or not they regulate other functions of dynein remains elusive. Herein, overexpression of a Nudel mutant defective in association with either Lis1 or dynein heavy chain is shown to cause dispersions of membranous organelles whose trafficking depends on dynein. In contrast, the wild-type Nudel and the double mutant that binds to neither protein are much less effective. Time-lapse microscopy for lysosomes reveals significant reduction in both frequencies and velocities of their minus end-directed motions in cells expressing the dynein-binding defective mutant, whereas neither the durations of movement nor the plus end-directed motility is considerably altered. Moreover, silencing Nudel expression by RNA interference results in Golgi apparatus fragmentation and cell death. Together, it is concluded that Nudel is critical for dynein motor activity in membrane transport and possibly other cellular activities through interactions with both Lis1 and dynein heavy chain.
Nudel和Lis1似乎通过直接相互作用在神经元迁移和有丝分裂过程中调节细胞质动力蛋白。然而,它们是否调节动力蛋白的其他功能仍不清楚。在此,与Lis1或动力蛋白重链结合存在缺陷的Nudel突变体的过表达显示会导致膜细胞器的分散,其运输依赖于动力蛋白。相比之下,野生型Nudel和不与这两种蛋白结合的双突变体的效果要差得多。对溶酶体的延时显微镜观察显示,在表达与动力蛋白结合缺陷突变体的细胞中,其负端定向运动的频率和速度均显著降低,而运动持续时间和正端定向运动性均未发生明显改变。此外,通过RNA干扰使Nudel表达沉默会导致高尔基体碎片化和细胞死亡。总之,得出的结论是,Nudel通过与Lis1和动力蛋白重链相互作用,对于膜运输中的动力蛋白运动活性以及可能的其他细胞活动至关重要。