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Sequence and functional characterization of the terminal exon of the human insulin receptor gene

机译:人胰岛素受体基因末端外显子的序列和功能表征

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摘要

We present 5.1 kb of the 3′ noncoding region sequence of the human insulin receptor gene and identification of four functional polyadenylation domains responsible for 3′-end processing of the 5.4, 6.9, 8.0 and 9.4 kb human insulin receptor mRNA, respectively. The insulin receptor gene contains five putative polyadenylation sites (P1–P5), located 5160, 6502, 7488, 8945 and 8957 base pairs (bp) downstream from the translational initiation site. All putative polyadenylation sites are flanked by upstream AU rich and downstream GU rich regions which regulate mRNA stability and mRNA cleavage, respectively. Also, two RNA stem-loop structures have been identified. To determine its role on gene expression, a reporter gene was constructed containing various lengths of the insulin receptor 3′ UTR and transiently transfected into COS 7 cells. A 539 bp fragment (4897–5436 bp downstream from the IR translational initiation site) inhibited CAT expression by 5–6-fold. Further downstream addition of 1169 bp of the insulin receptor 3′ untranslated region enhanced gene expression by 2-fold. These studies provide evidence that the insulin receptor 3′ untranslated region can modulate gene expression.
机译:我们目前人胰岛素受体基因的3'非编码区序列的5.1 kb和鉴定负责5.4,6.9,8.0和9.4 kb人胰岛素受体mRNA的3'末端加工的四个功能性聚腺苷酸化域的鉴定。胰岛素受体基因包含五个推定的聚腺苷酸化位点(P1-P5),位于翻译起始位点下游5160、6502、7488、8945和8957个碱基对(bp)。所有推定的聚腺苷酸化位点的侧翼分别是上游的AU富集区和下游的GU富集区,分别调节mRNA稳定性和mRNA切割。另外,已经鉴定出两个RNA茎-环结构。为了确定其在基因表达中的作用,构建了包含各种长度的胰岛素受体3'UTR的报告基因,并瞬时转染到COS 7细胞中。 539 bp的片段(IR翻译起始位点下游的4897–5436 bp)抑制CAT表达5-6倍。进一步向下游添加1169 bp的胰岛素受体3'非翻译区可使基因表达提高2倍。这些研究提供了胰岛素受体3'非翻译区可以调节基因表达的证据。

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