Sakakibara S, Imai T, Hamaguchi K, Okabe M, Aruga J, Nakajima K, Yasutomi D, Nagata T, Kurihara Y, Uesugi S, Miyata T, Ogawa M, Mikoshiba K, Okano H
Department of Molecular Neurobiology, Institute of Basic Medical Sciences, University of Tsukuba, Ibaraki, Japan.
Dev Biol. 1996 Jun 15;176(2):230-42. doi: 10.1006/dbio.1996.0130.
There is increasing interest in the role of RNA-binding proteins during neural development. Drosophila Musashi is one of the neural RNA-binding proteins essential for neural development and required for asymmetric cell divisions in the Drosophila adult sensory organ development. Here, a novel mammalian neural RNA-binding protein, mouse-Musashi-1, was identified based on the homology to Drosophila Musashi and Xenopus NRP-1. In the developing CNS, mouse-Musashi-1 protein was highly enriched in the CNS stem cell. Single-cell culture experiments indicated that mouse-Musashi-1 expression is associated with neural precursor cells that are capable of generating neurons and glia. In contrast, in fully differentiated neuronal and glial cells mouse-Musashi-1 expression is lost. This expression pattern of mouse-Musashi-1 is complementary to that of another mammalian neural RNA-binding protein, Hu (a mammalian homologue of a Drosophila neuronal RNA-binding protein Elav), that is expressed in postmitotic neurons within the CNS. In vitro studies indicated that mouse-Musashi-1 possesses binding preferences on poly(G) RNA homopolymer, whereas Hu is known to preferentially bind to short A/U-rich regions in RNA. Based on their differential expression patterns and distinct preferential target RNA sequences, we believe that the mouse-Musashi-1 and Hu proteins may play distinct roles in neurogenesis, either through sequential regulatory mechanisms or differential sorting of mRNA populations during asymmetric division of neural precursor cells.
人们对RNA结合蛋白在神经发育过程中的作用越来越感兴趣。果蝇的武藏蛋白是神经发育所必需的神经RNA结合蛋白之一,在果蝇成虫感觉器官发育的不对称细胞分裂中发挥作用。在此,基于与果蝇武藏蛋白和非洲爪蟾NRP-1的同源性,鉴定出一种新的哺乳动物神经RNA结合蛋白——小鼠武藏蛋白-1。在发育中的中枢神经系统中,小鼠武藏蛋白-1在中枢神经系统干细胞中高度富集。单细胞培养实验表明,小鼠武藏蛋白-1的表达与能够产生神经元和神经胶质细胞的神经前体细胞有关。相反,在完全分化的神经元和神经胶质细胞中,小鼠武藏蛋白-1的表达消失。小鼠武藏蛋白-1的这种表达模式与另一种哺乳动物神经RNA结合蛋白Hu(果蝇神经元RNA结合蛋白Elav的哺乳动物同源物)互补,Hu在中枢神经系统的有丝分裂后神经元中表达。体外研究表明,小鼠武藏蛋白-1对聚(G)RNA同聚物具有结合偏好,而Hu则优先结合RNA中富含A/U的短区域。基于它们不同的表达模式和独特的优先靶RNA序列,我们认为小鼠武藏蛋白-1和Hu蛋白可能在神经发生中发挥不同作用,要么通过顺序调节机制,要么通过神经前体细胞不对称分裂过程中mRNA群体的差异分选。