Some vertebrate species have evolved means of extending their visual sensitivity beyond the range of human vision. One mechanism of enhancing sensitivity to long-wavelength light is to replace the 11-cis retinal chromophore in photopigments with 11-cis 3,4-didehydroretinal. Despite over a century of research on this topic, the enzymatic basis of this perceptual switch remains unknown. Here, we show that a cytochrome P450 family member, Cyp27c1, mediates this switch by converting vitamin A1 (the precursor of 11-cis retinal) into vitamin A2 (the precursor of 11-cis 3,4-didehydroretinal). Knockout of cyp27c1 in zebrafish abrogates production of vitamin A2, eliminating the animal's ability to red-shift its photoreceptor spectral sensitivity and reducing its ability to see and respond to near-infrared light. Thus, the expression of a single enzyme mediates dynamic spectral tuning of the entire visual system by controlling the balance of vitamin A1 and A2 in the eye.
Cyp27c1 Red-Shifts the Spectral Sensitivity of Photoreceptors by Converting Vitamin A1 into A2.
Cyp27c1 通过将维生素 A1 转化为 A2 来红移光感受器的光谱敏感性
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作者:Enright Jennifer M, Toomey Matthew B, Sato Shin-ya, Temple Shelby E, Allen James R, Fujiwara Rina, Kramlinger Valerie M, Nagy Leslie D, Johnson Kevin M, Xiao Yi, How Martin J, Johnson Stephen L, Roberts Nicholas W, Kefalov Vladimir J, Guengerich F Peter, Corbo Joseph C
| 期刊: | Current Biology | 影响因子: | 7.500 |
| 时间: | 2015 | 起止号: | 2015 Dec 7; 25(23):3048-57 |
| doi: | 10.1016/j.cub.2015.10.018 | ||
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