Yoshimura Atsushi, Fujii Ritsuko, Watanabe Yasuhito, Okabe Shigeo, Fukui Kenji, Takumi Toru
Osaka Bioscience Institute, Suita, Osaka 565-0874, Japan.
Curr Biol. 2006 Dec 5;16(23):2345-51. doi: 10.1016/j.cub.2006.10.024.
mRNA localization has an essential role in localizing cytoplasmic determinants, controlling the direction of protein secretion, and allowing the local control of protein synthesis in neurons. In neuronal dendrites, the localization and translocation of mRNA is considered as one of the molecular bases of synaptic plasticity. Recent imaging and functional studies revealed that several RNA-binding proteins form a large messenger ribonucleoprotein (mRNP) complex that is involved in transport and translation of mRNA in dendrites. However, the mechanism of mRNA translocation into dendritic spines is unknown. Here, we show that an actin-based motor, myosin-Va, plays a significant role in mRNP transport in neuronal dendrites and spines. Myosin-Va was Ca2+-dependently associated with TLS, an RNA-binding protein, and its target RNA Nd1-L, an actin stabilizer. A dominant-negative mutant or RNAi of myosin-Va in neurons suppressed TLS accumulation in spines and further impaired TLS dynamics upon activation of mGluRs. The TLS translocation into spines was impeded also in neurons prepared from myosin-Va-null dilute-lethal (dl) mice, which exhibit neurological defects. Our results demonstrate that myosin-Va facilitates the transport of TLS-containing mRNP complexes in spines and may function in synaptic plasticity through Ca2+ signaling.
信使核糖核酸(mRNA)定位在定位细胞质决定因素、控制蛋白质分泌方向以及实现神经元中蛋白质合成的局部调控方面发挥着重要作用。在神经元树突中,mRNA的定位和转运被认为是突触可塑性的分子基础之一。最近的成像和功能研究表明,几种RNA结合蛋白形成了一个大型信使核糖核蛋白(mRNP)复合物,该复合物参与树突中mRNA的运输和翻译。然而,mRNA转运到树突棘中的机制尚不清楚。在这里,我们表明,一种基于肌动蛋白的马达蛋白,肌球蛋白-Va,在神经元树突和树突棘中的mRNP运输中发挥着重要作用。肌球蛋白-Va与一种RNA结合蛋白TLS以及其靶RNA Nd1-L(一种肌动蛋白稳定剂)呈Ca2+依赖性结合。神经元中肌球蛋白-Va的显性负性突变体或RNA干扰抑制了TLS在树突棘中的积累,并在代谢型谷氨酸受体(mGluRs)激活后进一步损害了TLS的动态变化。在由肌球蛋白-Va基因敲除的稀致死(dl)小鼠制备的神经元中,TLS向树突棘的转运也受到阻碍,这些小鼠表现出神经缺陷。我们的结果表明,肌球蛋白-Va促进了含TLS的mRNP复合物在树突棘中的运输,并可能通过Ca2+信号传导在突触可塑性中发挥作用。