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脊椎动物视觉色素的分子进化

Molecular evolution of vertebrate visual pigments.

作者信息

Yokoyama S

机构信息

Biological Research Laboratories, Department of Biology, Syracuse University, Syracuse, NY 13244, USA.

出版信息

Prog Retin Eye Res. 2000 Jul;19(4):385-419. doi: 10.1016/s1350-9462(00)00002-1.

Abstract

Dramatic improvement of our understanding of the genetic basis of vision was brought by the molecular characterization of the bovine rhodopsin gene and the human rhodopsin and color opsin genes (Nathans and Hogness, 1983; Nathans et al., 1984, 1986a,b). The availability of cDNA clones from these studies has facilitated the isolation of retinal and nonretinal opsin genes and cDNA clones from a large variety of species. Today, the number of genomic and cDNA clones of opsin genes isolated from different vertebrate species exceeds 100 and is increasing rapidly. The opsin gene sequences reveal the importance of the origin and differentiation of various opsins and visual pigments. To understand the molecular genetic basis of spectral tuning of visual pigments, it is essential to establish correlations between a series of the sequences of visual pigments and their lambda(max) values. The potentially important amino acid changes identified in this way have to be tested whether they are in fact responsible for the lambda(max)-shifts using site-directed mutagenesis and cultured cells. A major goal of molecular evolutionary genetics is to understand the molecular mechanisms involved in functional adaptations of organisms to different environments, including the mechanisms of the regulation of the spectral absorption. Therefore, both molecular evolutionary analyses of visual pigments and vision science have an important common goal.

摘要

牛视紫红质基因以及人类视紫红质和色视蛋白基因的分子特征,极大地增进了我们对视觉遗传基础的理解(内森斯和霍格尼斯,1983年;内森斯等人,1984年、1986年a、b)。这些研究中获得的cDNA克隆,有助于从多种物种中分离视网膜和非视网膜视蛋白基因以及cDNA克隆。如今,从不同脊椎动物物种中分离出的视蛋白基因的基因组和cDNA克隆数量已超过100个,且还在迅速增加。视蛋白基因序列揭示了各种视蛋白和视觉色素的起源与分化的重要性。为了理解视觉色素光谱调谐的分子遗传基础,必须在一系列视觉色素序列与其λ(max)值之间建立关联。通过这种方式确定的潜在重要氨基酸变化,必须使用定点诱变和培养细胞来测试它们是否实际上导致了λ(max)的变化。分子进化遗传学的一个主要目标是了解生物体对不同环境功能适应所涉及的分子机制,包括光谱吸收调节机制。因此,视觉色素的分子进化分析和视觉科学都有一个重要的共同目标。

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