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Primary structures of chicken cone visual pigments: vertebrate rhodopsins have evolved out of cone visual pigments.

机译:鸡视锥视色素的主要结构:脊椎动物视紫红质已从视锥视色素进化出来。

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摘要

The chicken retina contains rhodopsin (a rod visual pigment) and four kinds of cone visual pigments. The primary structures of chicken red (iodopsin) and rhodopsin have been determined previously. Here we report isolation of three cDNA clones encoding additional pigments from a chicken retinal cDNA library. Based on the partial amino acid sequences of the purified chicken visual pigments together with their biochemical and spectral properties, we have identified these clones as encoding the chicken green, blue, and violet visual pigments. Chicken violet was very similar to human blue not only in absorption maximum (chicken violet, 415 nm; human blue, 419 nm) but also in amino acid sequence (80.6% identical). Interestingly, chicken green was more similar (71-75.1%) than any other known cone pigment (42.0-53.7%) to vertebrate rhodopsins. The fourth additional cone pigment, chicken blue, had relatively low similarity (39.3-54.6%) in amino acid sequence to those of the other vertebrate visual pigments. A phylogenetic tree of vertebrate visual pigments constructed on the basis of amino acid identity indicated that an ancestral visual pigment evolved first into four groups (groups L, S, M1, and M2), each of which includes one of the chicken cone pigments, and that group Rh including vertebrate rhodopsins diverged from group M2 later. Thus, it is suggested that the gene for scotopic vision (rhodopsin) has evolved out of that for photopic vision (cone pigments). The divergence of rhodopsin from cone pigments was accompanied by an increase in negative net charge of the pigment.
机译:鸡视网膜含有视紫红质(杆状视觉色素)和四种视锥状视觉色素。鸡红(卵磷脂)和视紫红质的初级结构已经确定。在这里,我们报告从鸡视网膜cDNA文库中分离出三个编码其他色素的cDNA克隆。基于纯化的鸡肉视觉颜料的部分氨基酸序列及其生化和光谱特性,我们确定了这些克隆编码为鸡肉绿色,蓝色和紫色视觉颜料。鸡紫不仅在吸收最大值(鸡紫,415 nm;人蓝,419 nm)方面而且在氨基酸序列(80.6%相同)上与人蓝非常相似。有趣的是,与脊椎动物视紫红质相比,鸡绿比其他任何已知的锥状色素(42.0-53.7%)更相似(71-75.1%)。第四个额外的锥状色素鸡蓝在氨基酸序列上与其他脊椎动物视觉色素的相似性较低(39.3-54.6%)。基于氨基酸同一性构建的脊椎动物视觉色素的系统树表明,祖先视觉色素首先演化为四组(L,S,M1和M2组),每组包括一种鸡锥色素,以及包括脊椎动物视紫红质在内的Rh组后来与M2组分离。因此,建议暗视的基因(视紫红质)已经从明视的基因(视锥色素)中进化出来。视紫红质与锥状颜料的差异伴随有该颜料的负净电荷的增加。

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