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PNAS Plus: Six6 and Six7 coordinately regulate expression of middle-wavelength opsins in zebrafish

机译:PNAS Plus:Six6和Six7协同调节斑马鱼中波长视蛋白的表达

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摘要

Color discrimination in the vertebrate retina is mediated by a combination of spectrally distinct cone photoreceptors, each expressing one of multiple cone opsins. The opsin genes diverged early in vertebrate evolution into four classes maximally sensitive to varying wavelengths of light: UV (SWS1), blue (SWS2), green (RH2), and red (LWS) opsins. Although the tetrachromatic cone system is retained in most nonmammalian vertebrate lineages, the transcriptional mechanism underlying gene expression of the cone opsins remains elusive, particularly for SWS2 and RH2 opsins, both of which have been lost in the mammalian lineage. In zebrafish, which have all four cone subtypes, rh2 opsin gene expression depends on a homeobox transcription factor, sine oculis homeobox 7 (Six7). However, the six7 gene is found only in the ray-finned fish lineage, suggesting the existence of another evolutionarily conserved transcriptional factor(s) controlling rh2 opsin expression in vertebrates. Here, we found that the reduced rh2 expression caused by six7 deficiency was rescued by forced expression of six6b, which is a six7-related transcription factor conserved widely among vertebrates. The compensatory role of six6b was reinforced by ChIP-sequencing analysis, which revealed a similar pattern of Six6b- and Six7-binding sites within and near the cone opsin genes. TAL effector nuclease-induced genetic ablation of six6b and six7 revealed that they coordinately regulate SWS2 opsin gene expression. Mutant larvae deficient for these transcription factors showed severely impaired visually driven foraging behavior. These results demonstrate that in zebrafish, six6b and six7 govern expression of the SWS2 and RH2 opsins responsible for middle-wavelength sensitivity, which would be physiologically important for daylight vision.
机译:脊椎动物视网膜的颜色区分是由光谱不同的视锥细胞感光体的组合介导的,每个感受器表达多个视锥细胞视蛋白之一。视蛋白基因在脊椎动物进化的早期分化为对不同波长的光最大敏感的四类:紫外线(SWS1),蓝色(SWS2),绿色(RH2)和红色(LWS)视蛋白。尽管在大多数非哺乳动物脊椎动物谱系中都保留了四色视锥系统,但视锥蛋白的基因表达所依据的转录机制仍然难以捉摸,特别是对于SWS2和RH2视蛋白,这两种蛋白都已在哺乳动物谱系中丢失。在具有所有四个视锥细胞亚型的斑马鱼中,rh2 opsin基因的表达取决于一个同源盒转录因子,sine oculis homeobox 7(Six7)。但是,six7基因仅在有鳍的鱼类谱系中发现,表明存在控制脊椎动物rh2 opsin表达的另一种进化上保守的转录因子。在这里,我们发现由Six7缺乏引起的rh2表达降低是通过强制表达six6b来挽救的,后者是脊椎动物中广泛保存的与Six7相关的转录因子。 ChIP序列分析加强了six6b的补偿作用,该分析揭示了视锥视蛋白基因内部和附近的Six6b和Six7结合位点的模式相似。 TAL效应子核酸酶诱导的six6b和six7遗传消融显示,它们协同调节SWS2视蛋白基因表达。缺乏这些转录因子的突变幼虫显示严重损害了视觉驱动的觅食行为。这些结果表明,在斑马鱼中,six6b和six7控制着负责中波长敏感性的SWS2和RH2视蛋白的表达,这对日光视觉具有重要的生理意义。

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