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The transcription-splicing protein NonO/p54(nrb) and three NonO-interacting proteins bind to distal enhancer region and augment rhodopsin expression

机译:转录剪接蛋白NonO / p54(nrb)和三种与NonO相互作用的蛋白与远端增强子区域结合并增强视紫红质的表达

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Phototransduction machinery in vertebrate photoreceptors is contained within the membrane discs of outer segments. Daily renewal of 10 of photoreceptor outer segments requires stringent control of gene expression. Rhodopsin constitutes over 90 of the protein in rod discs, and its altered expression or transport is associated with photoreceptor dysfunction and/or death. Two cis-regulatory sequences have been identified upstream of the rhodopsin transcription start site. While the proximal promoter binds to specific transcription factors, including NRL and CRX, the rhodopsin enhancer region (RER) reportedly contributes to precise and high-level expression of rhodopsin in vivo. Here, we report the identification of RER-bound proteins by mass spectrometry. We validate the binding of NonO (p54(nrb)), a protein implicated in coupling transcription to splicing, and three NonO-interacting proteinsuhnRNP M, Ywhaz and Ppp1ca. NonO and its interactors can activate rhodopsin promoter in HEK293 cells and function synergistically with NRL and CRX. DNA-binding domain of NonO is critical for rhodopsin promoter activation. Chromatin immunoprecipitation followed by deep sequencing (ChIP-seq) analysis demonstrates high occupancy of NonO at rhodopsin and a subset of phototransduction genes. Furthermore, shRNA knockdown of NonO in mouse retina leads to loss of rhodopsin expression and rod cell death, which can be partially rescued by a C-terminal NonO construct. RNA-seq analysis of the NonO shRNA-treated retina revealed splicing defects and altered expression of genes, specifically those associated with phototransduction. Our studies identify an important contribution of NonO and its interacting modulator proteins in enhancing rod-specific gene expression and controlling rod homeostasis.
机译:脊椎动物感光体中的光转导机制包含在外部片段的膜片内。每天更新10个感光器外部片段需要严格控制基因表达。视紫红质构成杆盘中蛋白质的90%以上,其表达或运输的改变与感光器功能障碍和/或死亡有关。在视紫红质转录起始位点上游已鉴定出两个顺式调控序列。尽管近端启动子与包括NRL和CRX在内的特定转录因子结合,但视紫红质增强子区域(RER)据报道有助于视紫红质在体内的精确和高水平表达。在这里,我们报告通过质谱鉴定RER结合蛋白。我们验证了NonO(p54(nrb)),一种涉及转录与剪接耦合的蛋白,以及三种与NonO相互作用的蛋白uhnRNP M,Ywhaz和Ppp1ca的结合。 NonO及其相互作用物可以激活HEK293细胞中的视紫红质启动子,并与NRL和CRX协同发挥作用。 NonO的DNA结合结构域对视紫红质启动子的激活至关重要。染色质免疫沉淀后再进行深度测序(ChIP-seq)分析表明,视紫红质和部分光转导基因对NonO的占有率很高。此外,小鼠视网膜中NonO的shRNA敲除导致视紫红质表达的丧失和杆状细胞死亡,这可以通过C端NonO构建体部分挽救。经NonO shRNA处理的视网膜的RNA-seq分析揭示了剪接缺陷和基因表达的改变,特别是与光转导相关的基因。我们的研究确定了NonO及其相互作用的调节蛋白在增强杆特异性基因表达和控制杆稳态方面的重要贡献。

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