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Rod-derived Cone Viability Factor-2 is a novel bifunctional-thioredoxin-like protein with therapeutic potential

机译:杆来源的圆锥生存力因子2是一种新型的双功能硫氧还蛋白样蛋白,具有治疗潜力

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Background Cone degeneration is the hallmark of the inherited retinal disease retinitis pigmentosa. We have previously identified a trophic factor "Rod-derived Cone Viability Factor (RdCVF) that is secreted by rods and promote cone viability in a mouse model of the disease. Results Here we report the bioinformatic identification and the experimental analysis of RdCVF2, a second trophic factor belonging to the Rod-derived Cone Viability Factor family. The mouse RdCVF gene is known to be bifunctional, encoding both a long thioredoxin-like isoform (RdCVF-L) and a short isoform with trophic cone photoreceptor viability activity (RdCVF-S). RdCVF2 shares many similarities with RdCVF in terms of gene structure, expression in a rod-dependent manner and protein 3D structure. Furthermore, like RdCVF, the RdCVF2 short isoform exhibits cone rescue activity that is independent of its putative thiol-oxydoreductase activity. Conclusion Taken together, these findings define a new family of bifunctional genes which are: expressed in vertebrate retina, encode trophic cone viability factors, and have major therapeutic potential for human retinal neurodegenerative diseases such as retinitis pigmentosa.
机译:背景技术圆锥变性是遗传性视网膜疾病色素性视网膜炎的标志。我们先前已经确定了一种营养因子“杆衍生的圆锥体生存力因子(RdCVF),它由杆分泌并促进该疾病的小鼠模型的圆锥体生存力。结果”在这里,我们报告生物信息学鉴定和RdCVF2的实验分析,属于Rod衍生的圆锥生存力因子家族的营养因子,已知小鼠RdCVF基因具有双功能,既编码长硫氧化还原蛋白样亚型(RdCVF-L),又编码具有营养锥体感光体活性的短异构体(RdCVF-S )。RdCVF2在基因结构,杆依赖型表达和蛋白质3D结构方面与RdCVF有许多相似之处,此外,与RdCVF一样,RdCVF2短异构体的视锥细胞拯救活性与其推定的巯基氧化还原酶活性无关。结论综上所述,这些发现定义了一个新的双功能基因家族,它们在脊椎动物视网膜中表达,编码营养性视锥细胞生存力因子,并具有对人类视网膜神经变性疾病如色素性视网膜炎的主要治疗潜力。

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