首页> 外文期刊>American Journal of Physiology >5' heterogeneity in epithelial sodium channel alpha-subunit mRNA leads to distinct NH2-terminal variant proteins.
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5' heterogeneity in epithelial sodium channel alpha-subunit mRNA leads to distinct NH2-terminal variant proteins.

机译:上皮钠通道α-亚基mRNA中的5'异质性导致不同的NH2末端变异蛋白。

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摘要

The amiloride-sensitive epithelial sodium channel (ENaC) is composed of three subunits: alpha, beta, and gamma. The human alpha-ENaC subunit is expressed as at least two transcripts (N. Voilley, E. Lingueglia, G. Champigny, M. G. Mattei, R. Waldmann, M. Lazdunski, and P. Barbry. Proc. Natl. Acad. Sci. USA 91: 247-251, 1994). To determine the origin of these transcripts, we characterized the 5' end of the alpha-ENaC gene. Four transcripts that differ at their first exon were identified. Exon 1A splices to exon 2 to form the 5' end of alpha-ENaC1, whereas exon 1B arises separately and continues into exon 2 to form alpha-ENaC2. Other variant mRNAs, alpha-ENaC3 and alpha-ENaC4, are formed by activating 5' splice sites within exon 1B. Although alpha-ENaC3 and -4 did not change the open reading frame for alpha-ENaC, alpha-ENaC2 contains upstream ATGs that add 59 amino acids to the previous (alpha-ENaC1) protein. To address the significance of these isoforms, both proteins were expressed in Xenopus oocytes. The cRNA for each alpha-ENaC transcript when combined with beta- and gamma-ENaC cRNA reconstituted a low-conductance ion channel with amiloride-sensitive currents of similar characteristics. We have thus identified variant alpha-ENaC mRNAs that lead to functional ENaC peptides.
机译:阿米洛利敏感性上皮钠通道(ENaC)由三个亚基组成:α,β和γ。人α-ENaC亚基表达为至少两个转录物(N.Voilley,E.Lingueglia,G.Champigny,MG Mattei,R.Waldmann,M.Lazdunski和P.Barbry.Proc.Natl.Acad.Sci。 USA 91:247-251,1994)。为了确定这些转录本的起源,我们表征了α-ENaC基因的5'末端。鉴定出在其第一个外显子上不同的四个转录本。外显子1A剪接至外显子2形成α-ENaC1的5'端,而外显子1B单独出现并继续进入外显子2形成α-ENaC2。通过激活外显子1B内的5'剪接位点,可以形成其他变体mRNA,即alpha-ENaC3和alpha-ENaC4。尽管alpha-ENaC3和-4不会改变alpha-ENaC的开放阅读框,但是alpha-ENaC2包含上游ATG,这些ATG向先前的(alpha-ENaC1)蛋白增加了59个氨基酸。为了解决这些同工型的重要性,两种蛋白质均在非洲爪蟾卵母细胞中表达。当将每个α-ENaC转录本的cRNA与β-和γ-ENaCcRNA结合使用时,便会形成具有类似特征的阿米洛利敏感电流的低电导离子通道。因此,我们已经鉴定出导致功能性ENaC肽的变异α-ENaCmRNA。

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