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浦肯野神经元在小脑特异表达的三个基因的cDNA克隆及特性分析

cDNA cloning and characterization of three genes uniquely expressed in cerebellum by Purkinje neurons.

作者信息

Nordquist D T, Kozak C A, Orr H T

机构信息

Institute of Human Genetics, University of Minnesota, Minneapolis 55455.

出版信息

J Neurosci. 1988 Dec;8(12):4780-9. doi: 10.1523/JNEUROSCI.08-12-04780.1988.

Abstract

The characteristics that distinguish the different neuronal cell types of an organism are believed to be primarily determined by unique patterns of cellular gene expression. The identification of cell-type specific molecules should therefore provide a good basis for understanding the biology of specific neuron types. In this paper, we describe the isolation of cDNA clones corresponding to mRNA uniquely expressed by Purkinje cells in mature mouse cerebellum. Three cDNA clones were selected from a library of normal mouse cerebellar cDNA by virtue of their failure to hybridize to mRNA sequences from the cerebella of Purkinje cell degeneration (pcd) mice. The cDNA clones were shown by in situ and Northern hybridization to correspond with mRNA present in Purkinje cells but absent or at low levels in other cell types of the cerebellum. By sequence analysis, clone PCD29 was determined to encode the calcium-binding protein calbindin-D28K. Clones PCD5 and PCD6 encode previously undescribed proteins of 99 and greater than 500 amino acids, respectively. All 3 PCD clones hybridized to mouse mRNA from sources other than cerebellum; clone PCD5 was found to have the most restricted expression, as it hybridized only to mRNA from cerebellum and eye. To define potential correlations between the PCD clones and mutations in the mouse genome known to affect Purkinje cells, clones PCD5, PCD6, and PCD29 were localized to mouse chromosomes 8, 6, and 4, respectively.

摘要

一种生物体中不同神经元细胞类型的区别特征,被认为主要由细胞基因表达的独特模式所决定。因此,细胞类型特异性分子的鉴定应为理解特定神经元类型的生物学特性提供良好基础。在本文中,我们描述了与成熟小鼠小脑中浦肯野细胞独特表达的mRNA相对应的cDNA克隆的分离。从正常小鼠小脑cDNA文库中挑选出三个cDNA克隆,其依据是它们未能与浦肯野细胞变性(pcd)小鼠小脑的mRNA序列杂交。原位杂交和Northern杂交显示,这些cDNA克隆与浦肯野细胞中存在但小脑其他细胞类型中不存在或含量低的mRNA相对应。通过序列分析,确定克隆PCD29编码钙结合蛋白钙结合蛋白-D28K。克隆PCD5和PCD6分别编码先前未描述的含99个和超过500个氨基酸的蛋白质。所有三个PCD克隆均与来自小脑以外来源的小鼠mRNA杂交;发现克隆PCD5的表达最为受限,因为它仅与来自小脑和眼睛的mRNA杂交。为了确定PCD克隆与已知影响浦肯野细胞的小鼠基因组突变之间的潜在关联,分别将克隆PCD5、PCD6和PCD29定位到小鼠的8号、6号和4号染色体上。

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