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对烟酰胺腺嘌呤二核苷酸磷酸(NAD(P)H)氧化酶1(Nox1)基因的信使核糖核酸(mRNA)转录本的分析。反对烟酰胺腺嘌呤二核苷酸磷酸氧化酶同源物-1短型(NOH-1S)转录本变体产生的证据。

Analysis of mRNA transcripts from the NAD(P)H oxidase 1 (Nox1) gene. Evidence against production of the NADPH oxidase homolog-1 short (NOH-1S) transcript variant.

作者信息

Geiszt Miklós, Lekstrom Kristen, Leto Thomas L

机构信息

Laboratory of Host Defenses, NIAID, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2004 Dec 3;279(49):51661-8. doi: 10.1074/jbc.M409325200. Epub 2004 Sep 16.

Abstract

Recent reports indicate that NAD(P)H oxidase 1 (Nox1) mRNA undergoes alternative splicing, producing a short transcript (NOH-1S) encoding a novel H+ channel. Although the H+ transport properties of NOH-1S-transfected cells resemble those of many cells, the production of a NOH-1S protein was never documented. We characterized Nox1 transcripts in colon-derived cells and present evidence that mRNA splicing does not produce NOH-1S; rather, NOH-1S appears to be an artifact of template switching during cDNA synthesis. The NOH-1S transcript was not observed by Northern blotting, despite claims of its abundance based on RNase protection assays. The shortened cDNA was generated by avian myeloblastosis virus reverse transcriptase, but not by thermally stable reverse transcriptase under conditions that produce full-length Nox1. Analysis of shortened cDNAs detected NOH-1S sequence and other variants that differ at the alleged splice junction site. Although no appropriate RNA splicing sites were found within Nox1 to account for NOH-1S formation, we found repetitive sequence elements bordering the deleted region, which could promote intramolecular template switching during cDNA synthesis. Template switching was confirmed in vitro, where the deleted cDNA was generated by avian myeloblastosis virus reverse transcriptase from a synthetic, full-length Nox1 RNA template. A survey of the expressed sequence tags database suggests that similar switching phenomena occur between repetitive elements in other Nox family transcripts, indicating such cloning artifacts are common. In contrast, genuine RNA splicing does account for another Nox1 transcript lacking the entire exon 11, which is abundant in colon cells but encodes a protein incapable of supporting superoxide production.

摘要

最近的报道表明,NAD(P)H氧化酶1(Nox1)mRNA会发生可变剪接,产生一种短转录本(NOH-1S),其编码一种新型H⁺通道。尽管转染了NOH-1S的细胞的H⁺转运特性与许多细胞相似,但从未有文献记载过NOH-1S蛋白的产生。我们对结肠来源的细胞中的Nox1转录本进行了表征,并提供证据表明mRNA剪接不会产生NOH-1S;相反,NOH-1S似乎是cDNA合成过程中模板转换的产物。尽管基于核糖核酸酶保护试验有人声称NOH-1S丰度很高,但通过Northern印迹法未观察到该转录本。缩短的cDNA是由禽成髓细胞瘤病毒逆转录酶产生的,而在产生全长Nox1的条件下,热稳定逆转录酶则不会产生。对缩短的cDNA的分析检测到了NOH-1S序列以及在所谓剪接连接位点处不同的其他变体。尽管在Nox1内未发现合适的RNA剪接位点来解释NOH-1S的形成,但我们发现了与缺失区域相邻的重复序列元件,这可能会促进cDNA合成过程中的分子内模板转换。体外实验证实了模板转换,其中缺失的cDNA是由禽成髓细胞瘤病毒逆转录酶从合成的全长Nox1 RNA模板产生的。对表达序列标签数据库的一项调查表明,其他Nox家族转录本中的重复元件之间也会发生类似的转换现象,这表明此类克隆产物很常见。相比之下,真正的RNA剪接确实可以解释另一种缺少整个外显子11的Nox1转录本,该转录本在结肠细胞中丰富,但编码的蛋白质无法支持超氧化物的产生。

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