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P19胚胎癌细胞神经元分化过程中哺乳动物无刚毛小盾片同源物(MASH)基因表达的诱导与抑制

Induction and repression of mammalian achaete-scute homologue (MASH) gene expression during neuronal differentiation of P19 embryonal carcinoma cells.

作者信息

Johnson J E, Zimmerman K, Saito T, Anderson D J

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Development. 1992 Jan;114(1):75-87. doi: 10.1242/dev.114.1.75.

Abstract

MASH1 and MASH2, mammalian homologues of the Drosophila neural determination genes achaete-scute, are members of the basic helix-loop-helix (bHLH) family of transcription factors. We show here that murine P19 embryonal carcinoma cells can be used as a model system to study the regulation and function of these genes. MASH1 and MASH2 display complementary patterns of expression during the retinoic-acid-induced neuronal differentiation of P19 cells. MASH1 mRNA is undetectable in undifferentiated P19 cells but is induced to high levels by retinoic acid coincident with neuronal differentiation. In contrast, MASH2 mRNA is expressed in undifferentiated P19 cells and is repressed by retinoic acid treatment. These complementary expression patterns suggest distinct functions for MASH1 and MASH2 in development, despite their sequence homology. In retinoic-acid-treated P19 cells, MASH1 protein expression precedes and then overlaps expression of neuronal markers. However, MASH1 is expressed by a smaller proportion of cells than expresses such markers. MASH1 immunoreactivity is not detected in differentiated cells displaying a neuronal morphology, suggesting that its expression is transient. These features of MASH1 expression are similar to those observed in vivo, and suggest that P19 cells represent a good model system in which to study the regulation of this gene. Forced expression of MASH1 was achieved in undifferentiated P19 cells by transfection of a cDNA expression construct. The transfected cells expressing exogenous MASH1 protein contained E-box-binding activity that could be super-shifted by an anti-MASH1 antibody, but exhibited no detectable phenotypic changes. Thus, unlike myogenic bHLH genes, such as MyoD, which are sufficient to induce muscle differentiation, expression of MASH1 appears insufficient to promote neurogenesis.

摘要

MASH1和MASH2是果蝇神经决定基因achaete-scute的哺乳动物同源物,属于转录因子的碱性螺旋-环-螺旋(bHLH)家族。我们在此表明,小鼠P19胚胎癌细胞可作为研究这些基因调控和功能的模型系统。在视黄酸诱导的P19细胞神经元分化过程中,MASH1和MASH2呈现互补的表达模式。在未分化的P19细胞中检测不到MASH1 mRNA,但视黄酸诱导其高水平表达,且与神经元分化同时发生。相反,MASH2 mRNA在未分化的P19细胞中表达,并在视黄酸处理后受到抑制。这些互补的表达模式表明,尽管MASH1和MASH2具有序列同源性,但它们在发育过程中具有不同的功能。在视黄酸处理的P19细胞中,MASH1蛋白表达先于神经元标记物的表达,然后与之重叠。然而,表达MASH1的细胞比例小于表达此类标记物的细胞比例。在显示神经元形态的分化细胞中未检测到MASH1免疫反应性,这表明其表达是短暂的。MASH1表达的这些特征与体内观察到的相似,表明P19细胞是研究该基因调控的良好模型系统。通过转染cDNA表达构建体,在未分化的P19细胞中实现了MASH1的强制表达。表达外源MASH1蛋白的转染细胞含有可被抗MASH1抗体超迁移的E盒结合活性,但未表现出可检测到的表型变化。因此,与肌源性bHLH基因如MyoD不同,MyoD足以诱导肌肉分化,而MASH1的表达似乎不足以促进神经发生。

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