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蝾螈紫外线视锥色素:序列、表达及光谱特性

Salamander UV cone pigment: sequence, expression, and spectral properties.

作者信息

Ma J X, Kono M, Xu L, Das J, Ryan J C, Hazard E S, Oprian D D, Crouch R K

机构信息

Department of Ophthalmology, Medical University of South Carolina, Charleston 29403, USA.

出版信息

Vis Neurosci. 2001 May-Jun;18(3):393-9. doi: 10.1017/s0952523801183057.

Abstract

The visual pigment from the ultraviolet (UV) cone photoreceptor of the tiger salamander has been cloned, expressed, and characterized. The cDNA contains a full-length open reading frame encoding 347 amino acids. The phylogenetic analysis indicates that the highest sequence homology is to the visual pigments in the S group. The UV opsin was tagged at the carboxy-terminus with the sequence for the 1D4 epitope. This fusion opsin was expressed in COS-1 cells, regenerated with 11-cis retinal (A1) and immuno-purified, yielding a pigment with an absorbance maximum (lambdamax) of 356 nm which is blue shifted from the absorption of retinal itself. The transducin activation assay demonstrated that this pigment is able to activate rod transducin in a light-dependent manner. Regeneration with 11-cis 3,4-dehydroretinal (A2) yielded a pigment with a lambdamax of 360 nm, only 4 nm red shifted from that of the A1 pigment, while bovine rhodopsin generated with A2 showed a 16-nm red shift from the corresponding A1 pigment. These results demonstrate that the trend for a shorter wavelength pigment to have a smaller shift of lambdamax between the A1 and A2 pigments also fits UV pigments. We hypothesize that the small red shift with A2 could be due to a twist in the chromophore that essentially isolates the ring double bond(s) from conjugation with the rest of the polyene chain.

摘要

虎螈紫外(UV)视锥光感受器的视觉色素已被克隆、表达和表征。该cDNA包含一个编码347个氨基酸的全长开放阅读框。系统发育分析表明,其与S组视觉色素的序列同源性最高。UV视蛋白在羧基末端用1D4表位序列进行标记。这种融合视蛋白在COS-1细胞中表达,用11-顺式视黄醛(A1)再生并免疫纯化,产生一种最大吸收波长(λmax)为356 nm的色素,该波长相对于视黄醛自身的吸收发生了蓝移。转导蛋白激活试验表明,这种色素能够以光依赖的方式激活视杆转导蛋白。用11-顺式3,4-脱氢视黄醛(A2)再生产生一种λmax为360 nm的色素,仅比A1色素的λmax红移4 nm,而用A2产生的牛视紫红质相对于相应的A1色素显示出16 nm的红移。这些结果表明,较短波长色素在A1和A2色素之间λmax的红移较小这一趋势也适用于UV色素。我们推测,A2导致的小红移可能是由于发色团的扭曲,这种扭曲基本上使环双键与多烯链的其余部分脱离共轭。

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