Mori H, Sakakibara S, Imai T, Nakamura Y, Iijima T, Suzuki A, Yuasa Y, Takeda M, Okano H
Division of Neuroanatomy, Department of Neuroscience, Biomedical Research Center, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
J Neurosci Res. 2001 Apr 15;64(2):132-43. doi: 10.1002/jnr.1060.
Functional analyses of neural RNA-binding proteins have focused mainly on their roles as modulators of posttranscriptional gene regulation, e.g., alternative splicing, dendritic mRNA localization, and local translation. Here we identified a mouse homologue of human IMP3, which is known to bind to and repress the translation of igf2 leader 3 mRNA. The mouse igf2 mRNA-binding protein 3 (mIMP3) is a member of the zipcode binding protein-1 (ZBP-1) family previously reported in chick fibroblast cells. mIMP3 was expressed in undifferentiated neuroepithelial cells and some postmitotic neurons at early embryonic stages (E10.5--E12.5), and its expression level decreased after the midembryonic stage (E12.5) until birth. The expression profile of mIMP3 is very similar to that of mouse igf2 leader 3 mRNA. In vitro UV cross-linking experiments showed that mIMP3 preferentially bound to igf2 leader 3 mRNA rather than igf2 leader 4 mRNA and did not bind the zipcode region of beta-actin or c-myc mRNA. Furthermore, persistent expression of mIMP3 protein in an undifferentiated P19 cell line revealed that mIMP3 inhibited neuronal differentiation morphologically and immunohistochemically. Taken together, these observations raise the possibility that mIMP3 represses neuronal differentiation through the regulation of igf2 mRNA expression.
神经RNA结合蛋白的功能分析主要集中在其作为转录后基因调控调节因子的作用上,例如可变剪接、树突状mRNA定位和局部翻译。在这里,我们鉴定出了人类IMP3的小鼠同源物,已知该同源物可结合并抑制igf2前导序列3 mRNA的翻译。小鼠igf2 mRNA结合蛋白3(mIMP3)是先前在鸡成纤维细胞中报道的zipcode结合蛋白-1(ZBP-1)家族的成员。mIMP3在胚胎早期阶段(E10.5 - E12.5)的未分化神经上皮细胞和一些有丝分裂后的神经元中表达,并且其表达水平在胚胎中期阶段(E12.5)后直至出生时下降。mIMP3的表达谱与小鼠igf2前导序列3 mRNA的表达谱非常相似。体外紫外线交联实验表明,mIMP3优先结合igf2前导序列3 mRNA而非igf2前导序列4 mRNA,并且不结合β-肌动蛋白或c-myc mRNA的zipcode区域。此外,在未分化的P19细胞系中持续表达mIMP3蛋白表明,mIMP3在形态学和免疫组织化学上抑制神经元分化。综上所述,这些观察结果增加了mIMP3通过调节igf2 mRNA表达来抑制神经元分化的可能性。