首页> 美国卫生研究院文献>Nucleic Acids Research >Alternative mRNA splice variants of the rat ClC-2 chloride channel gene are expressed in lung: genomic sequence and organization of ClC-2.
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Alternative mRNA splice variants of the rat ClC-2 chloride channel gene are expressed in lung: genomic sequence and organization of ClC-2.

机译:大鼠ClC-2氯通道基因的替代mRNA剪接变体在肺中表达:ClC-2的基因组序列和组织。

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摘要

The ClC-2 epithelial cell chloride channel is a voltage-, tonicity- and pH-regulated member of the ClC super family. We have previously shown that rat lung ClC-2 (rClC-2) is down-regulated at birth, and molecular diversity is generated by alternative splicing [Murray et al. (1995) Am. J. Respir. Cell Mol. Biol. 12, 597-604; Murray et al. (1996) Am. J. Physiol. 271, L829-L837; Chu et al . (1996) Nucleic Acids Res. 24, 3453-3457]. To investigate other possible mRNA splice variations, we sequenced the entire rClC-2 gene and found that ClC-2Sa (formerly ClC-2S) results from the deletion of exon 20. The preceding intron 19 has an unusually high CT content and a rare AAG acceptor site. Because both features were also found in intron 13, we next tested the hypothesis that intron 13 would be involved in alternative splicing. As predicted, a second splice product, ClC-2Sb, was found by RT-PCR, but only in lung. When we compared the genomic maps of rClC-2 and human ClC-1 (hClC-1), striking similarities were found in each exon except for rClC-2 exon 20, which is absent in hClC-1. These observations suggest that ClC-1 and ClC-2 may have evolved by gene duplication, mutation and DNA rearrangement.
机译:ClC-2上皮细胞氯化物通道是ClC超级家族的电压,张力和pH调节成员。先前我们已经表明,大鼠肺ClC-2(rClC-2)在出生时就被下调,并且通过选择性剪接产生了分子多样性[Murray等。 (1995)Am。 J.呼吸。细胞分子生物学12、597-604; Murray等。 (1996)Am。 J.生理学。 271,L829-L837; Chu等。 (1996)核酸研究。 24,3453-3457]。为了研究其他可能的mRNA剪接变异,我们对整个rClC-2基因进行了测序,发现ClC-2Sa(以前为ClC-2S)是外显子20缺失的结果。先前的内含子19具有异常高的CT含量和罕见的AAG受体站点。因为在内含子13中也发现了这两个特征,所以我们接下来测试了内含子13将参与选择性剪接的假设。如所预测的,通过RT-PCR发现了第二种剪接产物ClC-2Sb,但是仅在肺中。当我们比较rClC-2和人类ClC-1(hClC-1)的基因组图谱时,除了rClC-2外显子20(在hClC-1中不存在)外,每个外显子都具有惊人的相似性。这些观察结果表明,ClC-1和ClC-2可能已经通过基因复制,突变和DNA重排而进化。

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