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涉及一种异常剪接机制的外显子差异使用在小鼠大脑中产生至少八种类型的NCAM cDNA。

Differential exon usage involving an unusual splicing mechanism generates at least eight types of NCAM cDNA in mouse brain.

作者信息

Santoni M J, Barthels D, Vopper G, Boned A, Goridis C, Wille W

机构信息

Centre d'Immunologie INSERM-CNRS de Marseille-Luminy, France.

出版信息

EMBO J. 1989 Feb;8(2):385-92. doi: 10.1002/j.1460-2075.1989.tb03389.x.

Abstract

The murine neural cell adhesion molecule (NCAM) is known to exist in three isoforms of different size, NCAM-180, -140 and -120 coded for by four transcripts of 6.9, 6.1, 4.8 and 2.7 kb in length. Since the differences between these isoforms are due to alternative splicing in the coding region for the transmembrane and cytoplasmic domains, the extracellular, N-terminal portion of NCAM seemed to be shared by all three protein forms. Here we report that the coding region for N-terminal domains of NCAM also contains at least two sites of alternative splicing, termed alpha and pi. Short additional sequences of 3, 18 and 30 nt in length can be introduced at these sites, which are located in the membrane-proximal 'stem' between the Ig-like domains and the membrane attachment site and within the Ig-like domain IV, respectively. Proof for at least eight different mRNAs has been found by sequencing and S1 nuclease protection assays of selected independent cDNA clones, and Northern blot analyses. If most combination of the splice patterns identified so far in mouse brain occurred, 24 different mRNAs could be generated coding for 18 different proteins. The shortest extra-sequence found inserted at splice site alpha consisted only of the trinucleotide AAG, raising questions about the mechanism of this particular insertion.

摘要

已知小鼠神经细胞黏附分子(NCAM)以三种不同大小的异构体形式存在,即NCAM - 180、- 140和- 120,它们由长度分别为6.9、6.1、4.8和2.7 kb的四种转录本编码。由于这些异构体之间的差异是由于跨膜和细胞质结构域编码区的可变剪接造成的,因此NCAM的细胞外N端部分似乎为所有三种蛋白质形式所共有。在此我们报告,NCAM N端结构域的编码区也至少包含两个可变剪接位点,称为α和π。长度分别为3、18和30 nt的短附加序列可在这些位点引入,这些位点分别位于免疫球蛋白样结构域与膜附着位点之间的膜近端“茎”区以及免疫球蛋白样结构域IV内。通过对选定的独立cDNA克隆进行测序、S1核酸酶保护分析以及Northern印迹分析,已发现至少八种不同mRNA的证据。如果小鼠脑中迄今鉴定出的剪接模式的大多数组合都出现,那么可以产生24种不同的mRNA,编码18种不同的蛋白质。在剪接位点α处发现插入的最短额外序列仅由三核苷酸AAG组成,这引发了关于这种特定插入机制的疑问。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4643/400818/9a5a002d8c6b/emboj00126-0058-a.jpg

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