首页> 美国卫生研究院文献>Molecular and Cellular Biology >Establishment of a Novel In Vivo Sex-Specific Splicing Assay System To Identify a trans-Acting Factor That Negatively Regulates Splicing of Bombyx mori dsx Female Exons
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Establishment of a Novel In Vivo Sex-Specific Splicing Assay System To Identify a trans-Acting Factor That Negatively Regulates Splicing of Bombyx mori dsx Female Exons

机译:建立新的体内性别特异性剪接分析系统以鉴定负调控家蚕dsx女性外显子剪接的反式作用因子。

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摘要

The Bombyx mori homolog of doublesex, Bmdsx, plays an essential role in silkworm sexual development. Exons 3 and 4 of Bmdsx pre-mRNA are specifically excluded in males. To explore how this occurs, we developed a novel in vivo sex-specific splicing assay system using sexually differentiated cultured cells. A series of mutation analyses using a Bmdsx minigene with this in vivo splicing assay system identified three distinct sequences (CE1, CE2, and CE3) positioned in exon 4 as exonic splicing silencers responsible for male-specific splicing. Gel shift analysis showed that CE1 binds to a nuclear protein from male cells but not that from female cells. Mutation of UAA repeats within CE1 inhibited the binding of the nuclear protein to the RNA and caused female-specific splicing in male cells. We have identified BmPSI, a Bombyx homolog of P-element somatic inhibitor (PSI), as the nuclear factor that specifically binds CE1. Down-regulation of endogenous BmPSI by RNA interference significantly increased female-specific splicing in male cells. This is the first report of a PSI homolog implicated in the regulated sex-specific splicing of dsx pre-mRNA.
机译:双性恋的家蚕同源物,Bmdsx,在蚕的性发育中起重要作用。 Bmdsx pre-mRNA的外显子3和4在男性中被明确排除。为了探讨这种情况是如何发生的,我们使用性分化的培养细胞开发了一种新型的体内性别特异性剪接测定系统。使用Bmdsx小基因与该体内剪接测定系统进行的一系列突变分析,确定了位于外显子4上的三个不同序列(CE1,CE2和CE3)是负责雄性特异性剪接的外显子剪接沉默子。凝胶位移分析表明,CE1与雄性细胞的一种核蛋白结合,而与雌性细胞的则没有。 CE1内UAA重复序列的突变会抑制核蛋白与RNA的结合,并在雄性细胞中引起雌性特异性剪接。我们已经确定BmPSI是P元素体细胞抑制剂(PSI)的Bombyx同源物,是与CE1特异性结合的核因子。 RNA干扰对内源性BmPSI的下调显着增加了雄性细胞中雌性特异性的剪接。这是涉及dsx pre-mRNA调控的性别特异性剪接的PSI同源物的首次报道。

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