Lin P T, Gleeson J G, Corbo J C, Flanagan L, Walsh C A
Division of Neurogenetics, Department of Neurology, Beth Israel Deaconess Medical Center, Boston, Massachusetts, 02115, USA.
J Neurosci. 2000 Dec 15;20(24):9152-61. doi: 10.1523/JNEUROSCI.20-24-09152.2000.
Doublecortin (DCX) is a microtubule-associated protein required for neuronal migration to the cerebral cortex. DCAMKL1 consists of an N terminus that is 65% similar to DCX throughout the entire length of DCX, but also contains an additional 360 amino acid C-terminal domain encoding a putative Ca(2+)/calmodulin-dependent protein kinase. The homology to DCX suggested that DCAMKL1 may regulate microtubules, as well as mediate a phosphorylation-dependent signal transduction pathway. Here we show that DCAMKL1 is expressed throughout the CNS and PNS in migrating neuronal populations and overlaps in its expression with DCX and microtubules. Purified DCAMKL1 associates with microtubules and stimulates polymerization of purified tubulin and the formation of aster-like microtubule structures. Overexpressed DCAMKL1 leads to striking microtubule bundling in cell lines and cultured primary neural cells. Time-lapse imaging of cells transfected with a DCAMKL1-green fluorescent protein fusion protein shows that the microtubules associated with the protein remain dynamic. DCAMKL1 also encodes a functional kinase capable of phosphorylating myelin basic protein and itself. However, elimination of the kinase activity of DCAMKL1 has no detectable effect on its microtubule polymerization activity. Because DCAMKL1 is coexpressed with DCX, the two proteins form a potentially mutually regulatory network linking calcium signaling and microtubule dynamics.
双皮质素(DCX)是神经元迁移至大脑皮质所必需的一种微管相关蛋白。双皮质素样蛋白激酶1(DCAMKL1)的N端在整个长度上与DCX有65%的相似性,但还包含一个额外的360个氨基酸的C端结构域,该结构域编码一种假定的钙/钙调蛋白依赖性蛋白激酶。与DCX的同源性表明,DCAMKL1可能调节微管,并介导磷酸化依赖性信号转导途径。在这里,我们表明DCAMKL1在中枢神经系统和外周神经系统中迁移的神经元群体中均有表达,其表达与DCX和微管重叠。纯化的DCAMKL1与微管结合,并刺激纯化微管蛋白的聚合以及星状微管结构的形成。过表达的DCAMKL1导致细胞系和原代培养神经细胞中出现显著的微管束。对转染了DCAMKL1-绿色荧光蛋白融合蛋白的细胞进行延时成像显示,与该蛋白相关的微管保持动态。DCAMKL1还编码一种能够磷酸化髓鞘碱性蛋白和其自身的功能性激酶。然而,消除DCAMKL1的激酶活性对其微管聚合活性没有可检测到的影响。由于DCAMKL1与DCX共表达,这两种蛋白形成了一个潜在的相互调节网络,将钙信号与微管动力学联系起来。