首页> 美国卫生研究院文献>The EMBO Journal >Complex alternative splicing of acetylcholinesterase transcripts in Torpedo electric organ; primary structure of the precursor of the glycolipid-anchored dimeric form.
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Complex alternative splicing of acetylcholinesterase transcripts in Torpedo electric organ; primary structure of the precursor of the glycolipid-anchored dimeric form.

机译:鱼雷电器官中乙酰胆碱酯酶转录物的复杂替代剪接;糖脂锚定的二聚体形式的前体的一级结构。

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摘要

In this paper, we show the existence of alternative splicing in the 3' region of the coding sequence of Torpedo acetylcholinesterase (AChE). We describe two cDNA structures which both diverge from the previously described coding sequence of the catalytic subunit of asymmetric (A) forms (Schumacher et al., 1986; Sikorav et al., 1987). They both contain a coding sequence followed by a non-coding sequence and a poly(A) stretch. Both of these structures were shown to exist in poly(A)+ RNAs, by S1 mapping experiments. The divergent region encoded by the first sequence corresponds to the precursor of the globular dimeric form (G2a), since it contains the expected C-terminal amino acids, Ala-Cys. These amino acids are followed by a 29 amino acid extension which contains a hydrophobic segment and must be replaced by a glycolipid in the mature protein. Analyses of intact G2a AChE showed that the common domain of the protein contains intersubunit disulphide bonds. The divergent region of the second type of cDNA consists of an adjacent genomic sequence, which is removed as an intron in A and Ga mRNAs, but may encode a distinct, less abundant catalytic subunit. The structures of the cDNA clones indicate that they are derived from minor mRNAs, shorter than the three major transcripts which have been described previously (14.5, 10.5 and 5.5 kb). Oligonucleotide probes specific for the asymmetric and globular terminal regions hybridize with the three major transcripts, indicating that their size is determined by 3'-untranslated regions which are not related to the differential splicing leading to A and Ga forms.
机译:在本文中,我们显示了鱼雷乙酰胆碱酯酶(AChE)编码序列3'区域中存在选择性剪接。我们描述了两个cDNA结构,这两个结构均与先前描述的不对称(A)形式的催化亚基的编码序列不同(Schumacher等,1986; Sikorav等,1987)。它们都包含一个编码序列,后接一个非编码序列和一个poly(A)序列。通过S1作图实验表明这两个结构都存在于poly(A)+ RNA中。由第一序列编码的发散区对应于球状二聚体形式(G2a)的前体,因为它包含预期的C端氨基酸Ala-Cys。这些氨基酸后面是29个氨基酸的延伸部分,其中包含一个疏水片段,必须在成熟蛋白中被糖脂取代。完整G2a AChE的分析表明,该蛋白质的共同结构域包含亚基间二硫键。第二种cDNA的发散区由一个相邻的基因组序列组成,该序列作为A和Ga mRNA中的内含子被去除,但可能编码一个独特的,含量较少的催化亚基。 cDNA克隆的结构表明它们源自次要mRNA,比先前已描述的三个主要转录本(14.5、10.5和5.5 kb)短。对不对称和球形末端区域特异的寡核苷酸探针与三个主要转录物杂交,表明它们的大小由3'非翻译区域决定,该区域与导致A和Ga形式的差异剪接无关。

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