The molecular mechanism for the spectral shifts between vertebrate ultraviolet- and violet-sensitive cone visual pigments

被引:97
作者
Cowing, JA
Poopalasundaram, S
Wilkie, SE
Robinson, PR
Bowmaker, JK
Hunt, DM
机构
[1] UCL, Inst Ophthalmol, London EC1V 9EL, England
[2] Univ Maryland, Dept Biol Sci, Baltimore, MD 21250 USA
关键词
evolution; opsin; spectral tuning;
D O I
10.1042/BJ20020483
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The short-wave-sensitive (SWS) visual pigments of vertebrate cone photoreceptors are divided into two classes on the basis of molecular identity, SWS1 and SWS2. Only the SWS1 class are present in mammals. The SWS1 pigments can be further subdivided into violet-sensitive (VS), with lambda(max) (the peak of maximal absorbance) values generally between 400 and 430 run, and ultraviolet-sensitive (UVS), with a lambda(max) < 380 nm. Phylogenetic evidence indicates that the ancestral pigment was UVS and that VS pigments have evolved separately from UVS pigments in the different vertebrate lineages. In this study, we have examined the mechanism of evolution of VS pigments in the mammalian lineage leading to present day ungulates (cow and pig). Amino acid sequence comparisons of the UVS pigments of teleost fish, amphibia, reptiles and rodents show that site 86 is invariably occupied by Phe but is replaced in bovine and porcine VS pigments by Tyr. Using site-directed mutagenesis of goldfish UVS opsin, we have shown that a Phe-86 --> Tyr substitution is sufficient by itself to shift the lambda(max) of the goldfish pigment from a wild-type value of 360 nm to around 420 nm, and the reverse substitution of Tyr-86-Phe into bovine VS opsin produces a similar shift in the opposite direction. The substitution of this single amino acid is sufficient to account therefore for the evolution of bovine and porcine VS pigments. The replacement of Phe with polar Tyr at site 86 is consistent with the stabilization of Schiff-base protonation in VS pigments and the absence of protonation in UVS pigments.
引用
收藏
页码:129 / 135
页数:7
相关论文
共 36 条
[1]   Regulation of phototransduction in short-wavelength cone visual pigments via the retinylidene Schiff base counterion [J].
Babu, KR ;
Dukkipati, A ;
Birge, RR ;
Knox, BE .
BIOCHEMISTRY, 2001, 40 (46) :13760-13766
[2]   ULTRAVIOLET-SENSITIVE CONES IN THE GOLDFISH [J].
BOWMAKER, JK ;
THORPE, A ;
DOUGLAS, RH .
VISION RESEARCH, 1991, 31 (03) :349-352
[3]  
BOWMAKER JK, 1991, J EXP BIOL, V156, P1
[4]   Visual pigments and oil droplets from six classes of photoreceptor in the retinas of birds [J].
Bowmaker, JK ;
Heath, LA ;
Wilkie, SE ;
Hunt, DM .
VISION RESEARCH, 1997, 37 (16) :2183-2194
[5]   MURINE AND BOVINE BLUE CONE PIGMENT GENES - CLONING AND CHARACTERIZATION OF 2 NEW MEMBERS OF THE S-FAMILY OF VISUAL PIGMENTS [J].
CHIU, MI ;
ZACK, DJ ;
WANG, YS ;
NATHANS, J .
GENOMICS, 1994, 21 (02) :440-443
[6]   Visual pigments and oil droplets in the retina of a passerine bird, the canary Serinus canaria:: microspectrophotometry and opsin sequences [J].
Das, D ;
Wilkie, SE ;
Hunt, DM ;
Bowmaker, JK .
VISION RESEARCH, 1999, 39 (17) :2801-2815
[7]   THE STRUCTURE OF RHODOPSIN AND THE ROD OUTER SEGMENT DISK MEMBRANE [J].
DRATZ, EA ;
HARGRAVE, PA .
TRENDS IN BIOCHEMICAL SCIENCES, 1983, 8 (04) :128-131
[8]   Serine 85 in transmembrane helix 2 of short-wavelength visual pigments interacts with the retinylidene schiff base counterion [J].
Dukkipati, A ;
Vought, BW ;
Singh, D ;
Birge, RR ;
Knox, BE .
BIOCHEMISTRY, 2001, 40 (50) :15098-15108
[9]   Spectral tuning in the human blue cone pigment [J].
Fasick, JI ;
Lee, N ;
Oprian, DD .
BIOCHEMISTRY, 1999, 38 (36) :11593-11596
[10]   THE OPSIN FAMILY OF PROTEINS [J].
FINDLAY, JBC ;
PAPPIN, DJC .
BIOCHEMICAL JOURNAL, 1986, 238 (03) :625-+