STRUCTURAL COMPARISON OF METARHODOPSIN-II, METARHODOPSIN-III, AND OPSIN BASED ON KINETIC-ANALYSIS OF FOURIER-TRANSFORM INFRARED DIFFERENCE SPECTRA

被引:44
作者
KLINGER, AL [1 ]
BRAIMAN, MS [1 ]
机构
[1] UNIV VIRGINIA,HLTH SCI CTR,DEPT BIOCHEM,CHARLOTTESVILLE,VA 22908
关键词
D O I
10.1016/S0006-3495(92)81700-9
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Fourier transform infrared difference spectra were measured at 30-s intervals after a complete bleach of rhodopsin (rho) samples at 20-degrees-C and three different pH values. At each pH, all of the spectra could be fit globally to two exponential decay processes. Using a branched unimolecular kinetic model in which metarhodopsin II (meta II) is hydrolyzed to opsin and retinal both directly and through metarhodopsin III (meta III), we calculated rho --> meta II, rho --> meta III, and rho --> opsin difference spectra at each of the pH values and obtained estimates for the microscopic rate constants at each pH. Because ot assumptions that had to be made about the branching ratio between the meta II decay pathways, some uncertainties remain in our calculated rho --> meta III difference spectrum at each pH. Nevertheless, our data covering long time ranges, especially those obtained at pH 8, place significant new constraints on the spectrum of meta III and thus on its structure. The rho --> meta II spectrum shows no significant pH dependence over the range examined (pH 5.5-8). However, the rho --> meta III and rho --> opsin spectra each include a limited subset of pH-dependent peaks, which are mostly attributable to titratable amino acid side chains. Our observations can be used to refine an earlier conclusion that the visual pigment refolds to a rhodopsin-like conformation during meta II decay (Rothschild, K. J., J. Gillespie, and W. J. DeGrip. 1987. Biophys. J. 51:345-350). Most of this refolding occurs in the same way at pH values ranging from 5.5 to 8 and whether meta II decays to meta III or opsin. Meta II displays unique spectral perturbations that are mostly attributable to a few residues, probably including three to four aspartic or glutamic acids and an arginine.
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页码:1244 / 1255
页数:12
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共 29 条
[2]   PATHWAYS IN THE HYDROLYSIS OF VERTEBRATE RHODOPSIN [J].
BLAZYNSKI, C ;
OSTROY, SE .
VISION RESEARCH, 1984, 24 (05) :459-470
[3]   DUAL PATHWAYS IN THE PHOTOLYSIS OF RHODOPSIN - STUDIES USING A DIRECT CHEMICAL METHOD [J].
BLAZYNSKI, C ;
OSTROY, SE .
VISION RESEARCH, 1981, 21 (06) :833-841
[4]   MILLISECOND FOURIER-TRANSFORM INFRARED DIFFERENCE SPECTRA OF BACTERIORHODOPSINS M412 PHOTOPRODUCT [J].
BRAIMAN, MS ;
AHL, PL ;
ROTHSCHILD, KJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1987, 84 (15) :5221-5225
[5]   KINETIC-ANALYSIS OF TIME-RESOLVED INFRARED DIFFERENCE SPECTRA OF THE L-INTERMEDIATES AND M-INTERMEDIATES OF BACTERIORHODOPSIN [J].
CHEN, WG ;
BRAIMAN, MS .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1991, 54 (06) :905-910
[6]   ESTIMATION OF AMINO-ACID RESIDUE SIDE-CHAIN ABSORPTION IN INFRARED-SPECTRA OF PROTEIN SOLUTIONS IN HEAVY-WATER [J].
CHIRGADZE, YN ;
FEDOROV, OV ;
TRUSHINA, NP .
BIOPOLYMERS, 1975, 14 (04) :679-694
[7]   CARBOXYL GROUP INVOLVEMENT IN THE META-I AND META-II STAGES IN RHODOPSIN BLEACHING - A FOURIER-TRANSFORM INFRARED SPECTROSCOPIC STUDY [J].
DEGRIP, WJ ;
GILLESPIE, J ;
ROTHSCHILD, KJ .
BIOCHIMICA ET BIOPHYSICA ACTA, 1985, 809 (01) :97-106
[8]   RESONANCE RAMAN STUDIES OF BOVINE METARHODOPSIN-I AND METARHODOPSIN-II [J].
DOUKAS, AG ;
ATON, B ;
CALLENDER, RH ;
EBREY, TG .
BIOCHEMISTRY, 1978, 17 (12) :2430-2435
[9]   COMPLEX-FORMATION BETWEEN METARHODOPSIN-II AND GTP-BINDING PROTEIN IN BOVINE PHOTORECEPTOR-MEMBRANES LEADS TO A SHIFT OF THE PHOTOPRODUCT EQUILIBRIUM [J].
EMEIS, D ;
KUHN, H ;
REICHERT, J ;
HOFMANN, KP .
FEBS LETTERS, 1982, 143 (01) :29-34
[10]   RHODOPSIN MUTANTS THAT BIND BUT FAIL TO ACTIVATE TRANSDUCIN [J].
FRANKE, RR ;
KONIG, B ;
SAKMAR, TP ;
KHORANA, HG ;
HOFMANN, KP .
SCIENCE, 1990, 250 (4977) :123-125