Institute of Biomedical Sciences, Academia Sinica, Taipei, Taiwan.
Mol Cell Biol. 2013 Jan;33(2):319-27. doi: 10.1128/MCB.01266-12. Epub 2012 Nov 5.
The RNA-binding protein RNA-binding motif protein 4 (RBM4) modulates alternative splicing of muscle-specific mRNA isoforms during muscle cell differentiation. To better understand the physiological function of RBM4, we exploited a gene knockout strategy in the present study. Mice with targeted disruption of one of the two Rbm4 genes exhibited hyperglycemia coincident with reduced levels of serum insulin and reduced size of pancreatic islets. The embryonic pancreases of Rbm4-deficient mice showed reduced expression or aberrant splicing of many transcripts encoding factors required for pancreas cell differentiation and function. Using pancreatic acinar AR42J cells, we demonstrated that RBM4 promoted insulin gene expression by altering the isoform balance of the transcription factors Isl1 and Pax4 via alternative splicing control. RBM4 overexpression was sufficient to convert AR42J cells into insulin-producing cells. Moreover, RBM4 may mediate glucose-induced insulin expression and insulin receptor isoform switches. These results suggest that RBM4 may have role in promoting pancreas cell differentiation and endocrine function, essentially via alternative splicing regulation.
RNA 结合蛋白 RNA 结合基序蛋白 4(RBM4)在肌肉细胞分化过程中调节肌肉特异性 mRNA 异构体的可变剪接。为了更好地理解 RBM4 的生理功能,我们在本研究中利用基因敲除策略。靶向敲除两个 Rbm4 基因之一的小鼠表现出高血糖症,同时血清胰岛素水平降低,胰岛体积减小。Rbm4 缺陷型小鼠的胚胎胰腺显示出许多编码胰腺细胞分化和功能所需因子的转录物的表达减少或异常剪接。使用胰腺腺泡 AR42J 细胞,我们证明 RBM4 通过改变转录因子 Isl1 和 Pax4 的异构体平衡来促进胰岛素基因的表达,从而通过可变剪接控制。RBM4 的过表达足以将 AR42J 细胞转化为产生胰岛素的细胞。此外,RBM4 可能介导葡萄糖诱导的胰岛素表达和胰岛素受体同工型转换。这些结果表明,RBM4 可能通过可变剪接调节在促进胰腺细胞分化和内分泌功能方面发挥作用。