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非洲爪蟾胚胎中视蛋白的早期表达先于光感受器分化。

Early opsin expression in Xenopus embryos precedes photoreceptor differentiation.

作者信息

Saha M S, Grainger R M

机构信息

Department of Biology University of Virginia Charlottesville 22903.

出版信息

Brain Res Mol Brain Res. 1993 Mar;17(3-4):307-18. doi: 10.1016/0169-328x(93)90016-i.

Abstract

The visual pigment which serves as the first step in the phototransduction cycle in vertebrate rod cells consists of a retinal chromophore which is linked to the transmembrane protein, opsin. Opsin genes have been isolated from a number of different organisms and studies have shown opsin to be developmentally regulated with both mRNA and protein expression associated with the morphological differentiation of photoreceptor cells. Due to its potential utility as a marker for rod photoreceptor determination in studies of retinal tissue interactions, and because no amphibian opsin genes have as yet been cloned, we isolated cDNA clones of the Xenopus laevis opsin gene. Sequence analysis shows that within the coding region Xenopus opsin shares a high degree of identity with other rod opsin genes, except at the C-terminal where it more closely resembles the mammalian color opsins. A developmental analysis, on the other hand, reveals that Xenopus opsin transcripts are detectable in a retina-specific fashion early in retinal development. Using in situ hybridization we find that Xenopus opsin mRNA is initially restricted to a few isolated cells in the presumptive photoreceptor layer which express the gene at relatively high levels. This suggests that rod photoreceptor determination occurs in single cells, and that the mechanisms controlling opsin expression in Xenopus are initiated well before any evidence of morphological differentiation.

摘要

在脊椎动物视杆细胞的光转导循环中作为第一步的视觉色素由与跨膜蛋白视蛋白相连的视黄醛发色团组成。视蛋白基因已从多种不同生物中分离出来,研究表明视蛋白在发育过程中受到调控,其mRNA和蛋白质表达与光感受器细胞的形态分化相关。由于其在视网膜组织相互作用研究中作为视杆光感受器确定标志物的潜在用途,并且由于尚未克隆出两栖类视蛋白基因,我们分离了非洲爪蟾视蛋白基因的cDNA克隆。序列分析表明,在编码区内,非洲爪蟾视蛋白与其他视杆视蛋白基因具有高度的同一性,但在C末端,它与哺乳动物的色觉视蛋白更为相似。另一方面,发育分析表明,非洲爪蟾视蛋白转录本在视网膜发育早期以视网膜特异性方式可检测到。通过原位杂交我们发现,非洲爪蟾视蛋白mRNA最初局限于假定的光感受器层中的一些孤立细胞,这些细胞以相对较高的水平表达该基因。这表明视杆光感受器的确定发生在单个细胞中,并且在非洲爪蟾中控制视蛋白表达的机制在任何形态分化证据出现之前就已启动。

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