Mechanisms of spectra tuning in the mouse green cone pigment

被引:167
作者
Sun, H
Macke, JP
Nathans, J
机构
[1] JOHNS HOPKINS UNIV,SCH MED,DEPT MOL BIOL & GENET,BALTIMORE,MD 21205
[2] JOHNS HOPKINS UNIV,SCH MED,DEPT NEUROSCI,BALTIMORE,MD 21205
[3] JOHNS HOPKINS UNIV,SCH MED,DEPT OPHTHALMOL,BALTIMORE,MD 21205
[4] JOHNS HOPKINS UNIV,SCH MED,HOWARD HUGHES MED INST,BALTIMORE,MD 21205
关键词
D O I
10.1073/pnas.94.16.8860
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Diversification of cone pigment spectral sensitivities during evolution is a prerequisite for the development of color vision. Previous studies have identified two naturally occurring mechanisms that produce variation among vertebrate pigments by red-shifting visual pigment absorbance: addition of hydroxyl groups to the putative chromophore binding pocket and binding of chloride to a putative extracellular loop, In this paper we describe the use of two blue-shifting mechanisms during the evolution of rodent long-wave cone pigments, The mouse green pigment belongs to the long-wave subfamily of cone pigments, but its absorption maximum is 508 nm, similar to that of the rhodopsin subfamily of visual pigments, but blue-shifted 44 nm relative to the human red pigment, Its closest homologue, We show that acquisition of a hydroxyl group near the retinylidene Schiff base and loss of the chloride binding site mentioned above fully account for the observed blue shift, These data indicate that the chloride binding site is not a universal attribute of long-wave cone pigments as generally supposed, and that, depending upon location, hydroxyl groups can alter the environment of the chromophore to produce either red or blue shifts.
引用
收藏
页码:8860 / 8865
页数:6
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