From the Department of Physiology and Pharmacology, Sackler Faculty of Medicine, and.
J Biol Chem. 2013 Sep 27;288(39):27812-24. doi: 10.1074/jbc.M113.465088. Epub 2013 Aug 19.
Cytoplasmic dynein is well characterized as an organelle motor, but dynein also acts to tether and stabilize dynamic microtubule plus-ends in vitro. Here we identify a novel and direct interaction between dynein and the 180-kDa isoform of the neural cell adhesion molecule (NCAM). Optical trapping experiments indicate that dynein bound to beads via the NCAM180 interaction domain can tether projecting microtubule plus-ends. Live cell assays indicate that the NCAM180-dependent recruitment of dynein to the cortex leads to the selective stabilization of microtubules projecting to NCAM180 patches at the cell periphery. The dynein-NCAM180 interaction also enhances cell-cell adhesion in heterologous cell assays. Dynein and NCAM180 co-precipitate from mouse brain extract and from synaptosomal fractions, consistent with an endogenous interaction in neurons. Thus, we examined microtubule dynamics and synaptic density in primary cortical neurons. We find that depletion of NCAM, inhibition of the dynein-NCAM180 interaction, or dampening of microtubule dynamics with low dose nocodazole all result in significantly decreased in synaptic density. Based on these observations, we propose a working model for the role of dynein at the synapse, in which the anchoring of the motor to the cortex via binding to an adhesion molecule mediates the tethering of dynamic microtubule plus-ends to potentiate synaptic stabilization.
细胞质动力蛋白作为一种细胞器马达而被很好地描述,但其也可作用于体外系留和稳定动态微管的正极。在此,我们鉴定了动力蛋白与神经细胞粘附分子(NCAM)的 180kDa 同工型之间的一种新的直接相互作用。光学捕获实验表明,通过与 NCAM180 相互作用域结合在珠上的动力蛋白可以系留伸出的微管正极。活细胞分析表明,NCAM180 依赖性招募动力蛋白到皮质导致选择性稳定伸向细胞外周的 NCAM180 斑块的微管。动力蛋白-NCAM180 相互作用也增强了在异源细胞测定中的细胞间粘附。动力蛋白和 NCAM180 从鼠脑提取物和突触体部分共沉淀,与神经元中的内源性相互作用一致。因此,我们检查了原代皮质神经元中的微管动力学和突触密度。我们发现,NCAM 的耗竭、动力蛋白-NCAM180 相互作用的抑制或用低剂量的 nocodazole 抑制微管动力学都会导致突触密度显著降低。基于这些观察结果,我们提出了动力蛋白在突触处的作用的工作模型,其中通过与粘附分子结合将马达锚定在皮质上介导动态微管正极的系留,从而增强突触稳定。