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哺乳动物无刚毛基因-锯齿基因同源物1在早期神经上皮细胞和神经嵴细胞的空间受限亚群中短暂表达。

Mammalian achaete-scute homolog 1 is transiently expressed by spatially restricted subsets of early neuroepithelial and neural crest cells.

作者信息

Lo L C, Johnson J E, Wuenschell C W, Saito T, Anderson D J

机构信息

Howard Hughes Medical Institute, California Institute of Technology, Pasadena 91125.

出版信息

Genes Dev. 1991 Sep;5(9):1524-37. doi: 10.1101/gad.5.9.1524.

Abstract

Using monoclonal antibodies, we have examined the expression pattern of MASH1, a basic helix-loop-helix protein that is a mammalian homolog of the Drosophila achaete-scute proteins. In Drosophila, achaete-scute genes are required for the determination of a subset of neurons. In the rat embryo, MASH1 expression is confined to subpopulations of neural precursor cells. The induction of MASH1 precedes, but is extinguished upon, overt neuronal differentiation. MASH1 is expressed in the forebrain by spatially restricted domains of neuroepithelium and in the peripheral nervous system exclusively by precursors of sympathetic and enteric neurons. The features of early and transient expression, in spatially restricted subpopulations of neural precursors, are similar to those observed for achaete-scute. Thus, the amino acid sequence conservation between MASH1 and achaete-scute is reflected in a parallel conservation of cell type specificity of expression, similar to the case of mammalian MyoD and Drosophila nautilus. These data support the idea that helix-loop-helix proteins may represent an evolutionarily conserved family of cell-type determination genes, of which MASH1 is the first neural-specific member identified in vertebrates.

摘要

我们使用单克隆抗体检测了MASH1的表达模式,MASH1是一种碱性螺旋-环-螺旋蛋白,是果蝇achaete-scute蛋白的哺乳动物同源物。在果蝇中,achaete-scute基因是确定一部分神经元所必需的。在大鼠胚胎中,MASH1的表达局限于神经前体细胞亚群。MASH1的诱导先于明显的神经元分化,但在神经元分化时消失。MASH1在前脑的神经上皮空间受限区域表达,在周围神经系统中仅由交感神经元和肠神经元的前体细胞表达。在神经前体的空间受限亚群中早期和短暂表达的特征与achaete-scute所观察到的相似。因此,MASH1和achaete-scute之间的氨基酸序列保守性反映在表达的细胞类型特异性的平行保守性上,类似于哺乳动物MyoD和果蝇鹦鹉螺的情况。这些数据支持这样一种观点,即螺旋-环-螺旋蛋白可能代表了一个细胞类型决定基因的进化保守家族,其中MASH1是在脊椎动物中鉴定出的第一个神经特异性成员。

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