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The Retinol Binding Protein Receptor 2 (Rbpr2) is required for Photoreceptor Outer Segment Morphogenesis and Visual Function in Zebrafish

机译:视黄醇结合蛋白受体2(Rbpr2)是斑马鱼的感光器外段形态发生和视觉功能所必需的

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摘要

Vitamin A (all-trans retinol) plays critical roles in mammalian development and vision. Since vitamin A is food-derived, tissue-specific uptake and storage mechanism are needed. In the eye, uptake of RBP4-retinol is mediated by the receptor Stra6, whereas the receptor mediating RBP4 binding and retinol transport into the liver has just recently been discovered. Here we examined the role of zebrafish retinol binding protein receptor 2 (Rbpr2) for RBP4-retinol uptake in developing embryos, using eye development and vision as sensitive readouts. In cultured cells, Rbpr2 localized to membranes and promoted RBP4-retinol uptake. In larvae, Rbpr2 expression was detected in developing intestinal enterocytes and liver hepatocytes. Two rbpr2 mutant zebrafish lines, each resulting in Rbpr2 deficiency, exhibit a small eye defect, and systemic malformations including hydrocephaly and cardiac edema, phenotypes associated with vitamin A deficiency. In the retina, Rbpr2 loss resulted in shorter photoreceptor outer segments, mislocalization and decrease in visual pigments, decreased expression of retinoic acid-responsive genes and photoreceptor cell loss, overall leading to a reduction of visual function. Together, these results demonstrate that Rbpr2-mediated RBP4-retinol uptake in developing liver and intestine is necessary to provide sufficient substrate for ocular retinoid production required for photoreceptor cell maintenance and visual function.
机译:维生素A(全反式视黄醇)在哺乳动物的发育和视力中起关键作用。由于维生素A是食物来源的,因此需要组织特异性的摄取和储存机制。在眼睛中,RBP4-视黄醇的摄取是由受体Stra6介导的,而最近发现了介导RBP4结合和视黄醇转运入肝脏的受体。在这里,我们使用眼睛发育和视觉作为敏感读数,研究了斑马鱼视黄醇结合蛋白受体2(Rbpr2)对RBP4-视黄醇摄取发育中的胚胎的作用。在培养的细胞中,Rbpr2定位于膜并促进RBP4-视黄醇摄取。在幼虫中,在发育中的肠肠上皮细胞和肝肝细胞中检测到Rbpr2表达。两个rbpr2突变斑马鱼品系,每个都导致Rbpr2缺乏症,表现出小眼缺陷,以及全身畸形,包括脑积水和心脏水肿,与维生素A缺乏症相关的表型。在视网膜中,Rbpr2丢失导致较短的感光细胞外段,错误定位和视觉色素减少,视黄酸反应性基因的表达降低以及感光细胞损失,总体导致视觉功能降低。总之,这些结果表明,在发育中的肝和肠中Rbpr2介导的RBP4-视黄醇摄取对于为感光细胞维持和视觉功能所需的眼类视黄醇生产提供足够的底物是必需的。

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