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首页> 外文期刊>Developmental biology >A mutation in the silver gene leads to defects in melanosome biogenesis and alterations in the visual system in the zebrafish mutant fading vision
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A mutation in the silver gene leads to defects in melanosome biogenesis and alterations in the visual system in the zebrafish mutant fading vision

机译:银基因的突变导致黑素体生物发生的缺陷以及斑马鱼突变体衰落视力中视觉系统的改变

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摘要

Forward genetic screens have been instrumental in defining molecular components of visual function. The zebrafish mutant fading vision (fdv) has been identified in such a screen due to defects in vision accompanied by hypopigmentation in the retinal pigment epithelium (RPE) and body melanocytes. The RPE forms the outer most layer of the retina, and its function is essential for vision. In fdv mutant larvae, the outer segments of photoreceptors are strongly reduced in length or absent due to defects in RPE cells, Ultrastructural analysis of RPE cells reveals dramatic cellular changes such as an absence of microvilli and vesicular inclusions. The retinoid profile is altered as judged by biochemical analysis, arguing for a partial block in visual pigment regeneration. Surprisingly, homozygous fdv vision mutants survive to adulthood and show, despite a persistence of the hypopigmentation, a partial recovery of retinal morphology. By positional cloning and subsequent morpholino knock-down, we identified a mutation in the silver gene as the molecular defect underlying the fdv phenotype. The Silver protein is required for intralumenal fibril formation in melanosomes by amylogenic cleavage. Our data reveal an unexpected link between melanosome biogenesis and the visual system, undetectable in cell culture. (c) 2005 Elsevier Inc. All rights reserved.
机译:前向遗传筛选已在定义视觉功能的分子成分中发挥了作用。由于视力缺陷并伴有视网膜色素上皮(RPE)和体内黑素细胞色素沉着不足,在这种屏幕中已鉴定出斑马鱼突变体褪色视力(fdv)。 RPE形成视网膜的最外层,其功能对于视力至关重要。在fdv突变幼虫中,由于RPE细胞中的缺陷,感光细胞的外部片段的长度大大减少或缺失,RPE细胞的超微结构分析显示出剧烈的细胞变化,例如不存在微绒毛和囊泡内含物。如通过生化分析判断的那样,类视色素的轮廓发生了变化,认为是视觉色素再生的部分阻滞。出乎意料的是,纯合的fdv视觉突变体可以存活到成年期,尽管色素沉着持续存在,但仍显示出部分视网膜形态的恢复。通过位置克隆和随后的吗啉代敲低,我们确定了银基因中的突变是fdv表型背后的分子缺陷。银蛋白是通过淀粉酶裂解在黑素体中形成管腔内原纤维所必需的。我们的数据揭示了在细胞培养中无法检测到的黑素体生物发生与视觉系统之间的意外关联。 (c)2005 Elsevier Inc.保留所有权利。

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