RBM4 promotes neuronal differentiation and neurite outgrowth by modulating Numb isoform expression

Author:

Tarn Woan-Yuh1,Kuo Hung-Che1,Yu Hsin-I.1,Liu Shin-Wu1,Tseng Ching-Tzu1,Dhananjaya Dodda1,Hung Kuan-Yang1,Tu Chi-Chiang1,Chang Shuo-Hsiu1,Huang Guo-Jen2,Chiu Ing-Ming3

Affiliation:

1. Institute of Biomedical Sciences, Academia Sinica, Taipei 11529, Taiwan

2. Graduate Institute of Biomedical Sciences, Chung-Gung University, Tao-Yuan City 33302, Taiwan

3. National Health Research Institutes, Chu-Nan 35053, Taiwan

Abstract

RBM4 participates in cell differentiation by regulating tissue-specific alternative pre-mRNA splicing. RBM4 also has been implicated in neurogenesis in the mouse embryonic brain. Using mouse embryonal carcinoma P19 cells as a neural differentiation model, we observed a temporal correlation between RBM4 expression and a change in splicing isoforms of Numb, a cell-fate determination gene. Knockdown of RBM4 affected the inclusion/exclusion of exons 3 and 9 of Numb in P19 cells. RBM4-deficient embryonic mouse brain also exhibited aberrant splicing of Numb pre-mRNA. Using a splicing reporter minigene assay, we demonstrated that RBM4 promoted exon 3 inclusion and exon 9 exclusion. Moreover, we found that RBM4 depletion reduced the expression of the proneural gene Mash1, and such reduction was reversed by an RBM4-induced Numb isoform containing exon 3 but lacking exon 9. Accordingly, induction of ectopic RBM4 expression in neuronal progenitor cells increased Mash1 expression and promoted cell differentiation. Finally, we found that RBM4 was also essential for neurite outgrowth from cortical neurons in vitro. Neurite outgrowth defects of RBM4-depleted neurons were rescued by RBM4-induced exon 9–lacking Numb isoforms. Therefore our findings indicate that RBM4 modulates exon selection of Numb to generate isoforms that promote neuronal cell differentiation and neurite outgrowth.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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