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首页> 外文期刊>Advances in Experimental Medicine and Biology >RETINA-Specific Expression of Kcnv2 Is Controlled by Cone-Rod Homeobox (Crx) and Neural Retina Leucine Zipper (Nrl)
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RETINA-Specific Expression of Kcnv2 Is Controlled by Cone-Rod Homeobox (Crx) and Neural Retina Leucine Zipper (Nrl)

机译:Kcnv2的RETINA特异性表达受锥杆同源盒(Crx)和神经视网膜亮氨酸拉链(Nrl)的控制。

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Cone dystrophy with supernormal rod response (CDSRR) is an autoso-mal recessive disorder that leads to progressive retinal degeneration with a distinct electroretinogram (ERG) phenotype. CDSRR patients show reduced sensitivity to dim light, augmented response to suprathreshold light and reduced response to flicker. The disorder is caused by mutations in the KCNV2 gene, which encodes the Kv 11.1 subunit of a voltage-gated potassium channel. Here, we studied the retina-specific expression and cis-regulatory activity of the murine Kcnv2 gene using electroporation of explanted retinas. Using qRT-PCR profiling of early postnatal retinas, we showed that Kcnv2 expression increased towards P14, which marks the beginning of visual activity in mice. In vivo electroporation of GFP~Kcnv2 expressing plasmids revealed that Kv11.l localizes to the inner segment membranes of adult P21 photoreceptors. Using bioinformatic prediction and chromatin immuno-precipitation (ChlP), we identified two Crx binding sites (CBS) and one Nrl binding site (NBS) in the Kcnv2 promoter. Reporter electroporation of the wild type promoter region induced strong DsRed expression, indicating high regulatory activity, whereas shRNA-mediated knockdown of Crx and Nrl resulted in reduced Kcnv2 promoter activity and low endogenous Kcnv2 mRNA expression in the retina. Site-directed mutagenesis of the CBS and NBS demonstrated that CBS2 is crucial for Kcnv2 promoter activity. We conclude that nucleotide changes in evolutionary conserved CBS could impact retina-specific expression levels of Kcnv2.
机译:具有超常杆反应(CDSRR)的锥体营养不良是一种常染色体隐性遗传疾病,可导致进行性视网膜变性,并具有独特的视网膜电图(ERG)表型。 CDSRR患者表现出对暗光的敏感性降低,对超阈值光的响应增强以及对闪烁的响应降低。该疾病是由KCNV2基因突变引起的,该基因编码电压门控钾通道的Kv 11.1亚基。在这里,我们使用电穿孔的视网膜植入研究了鼠Kcnv2基因的视网膜特异性表达和顺式调控活性。使用早期产后视网膜的qRT-PCR分析,我们显示Kcnv2表达朝P14增加,这标志着小鼠视觉活动的开始。 GFP〜Kcnv2表达质粒的体内电穿孔显示Kv11.1定位于成年P21感光细胞的内节膜。使用生物信息学预测和染色质免疫沉淀(ChlP),我们在Kcnv2启动子中鉴定了两个Crx结合位点(CBS)和一个Nrl结合位点(NBS)。野生型启动子区域的报道者电穿孔诱导了强烈的DsRed表达,表明其高调节活性,而shRNA介导的Crx和Nrl的敲低导致视网膜中Kcnv2启动子活性降低和内源性Kcnv2 mRNA表达降低。 CBS和NBS的定点诱变表明CBS2对于Kcnv2启动子活性至关重要。我们得出结论,进化保守的CBS中的核苷酸变化可能影响Kcnv2的视网膜特异性表达水平。

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