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大鼠胰岛素I基因内含子在基因表达调控中的双重功能。

Dual function of the intron of the rat insulin I gene in regulation of gene expression.

作者信息

Damert A, Leibiger B, Leibiger I B

机构信息

Institute of Biochemistry, School of Medicine, E,-M.-Arndt University, Greifswald, Germany.

出版信息

Diabetologia. 1996 Oct;39(10):1165-72. doi: 10.1007/BF02658502.

Abstract

Since the short intron in the 5'-untranslated region (5'-UTR) has been preserved during duplication of the insulin genes in rodents we postulated a possible involvement of these sequences in the regulation of gene expression. To examine this hypothesis we fused nested 5'-deletion fragments of the rat insulin I (rins1) promoter and sequences of the 5'-UTR up to nucleotide +170 with the reporter gene chloramphenicol acetyltransferase (CAT) and generated two series of expression constructs differing by the presence or absence of the intron (rins11VS). Transient expression of these chimeric genes in HIT M2.2.2 cells revealed a four-fold higher CAT expression in the presence of rins1IVS. Comparison of the CAT transcript quantities generated by both counterparts showed only a 1.7-fold difference in the total nuclear RNA fraction, but a four-fold difference in the fraction of nuclear polyadenylated RNA. Further analysis of cytoplasmic RNA excluded nuclear-cytoplasmic transport, RNA stability, and efficiency of translation as targets of the rins1IVS-mediated effect. The higher rate in polyadenylated CAT transcripts generated by rins1IVS-containing vectors suggests a possible coupling between splicing and polyadenylation. Transient expression studies using chimeras containing mutations or deletions between nucleotides -87 and +110 showed a reduction of expression by 30%. These data suggest a dual function of the rins1 intron on transcription initiation and transcript maturation.

摘要

由于在啮齿动物胰岛素基因复制过程中,5'-非翻译区(5'-UTR)中的短内含子得以保留,我们推测这些序列可能参与基因表达的调控。为检验这一假说,我们将大鼠胰岛素I(rins1)启动子的嵌套5'-缺失片段以及5'-UTR直至核苷酸+170的序列与报告基因氯霉素乙酰转移酶(CAT)融合,构建了两个系列的表达构建体,二者的区别在于有无内含子(rins1IVS)。这些嵌合基因在HIT M2.2.2细胞中的瞬时表达显示,存在rins1IVS时CAT表达高出四倍。对两种构建体产生的CAT转录本数量进行比较发现,在总核RNA组分中仅存在1.7倍的差异,但在核聚腺苷酸化RNA组分中存在四倍的差异。对细胞质RNA的进一步分析排除了核-质运输、RNA稳定性和翻译效率作为rins1IVS介导效应的作用靶点。含rins1IVS的载体产生的聚腺苷酸化CAT转录本比例更高,这表明剪接和聚腺苷酸化之间可能存在偶联。使用含有核苷酸-87至+110之间突变或缺失的嵌合体进行的瞬时表达研究表明,表达降低了30%。这些数据表明rins1内含子在转录起始和转录本成熟方面具有双重功能。

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