ROD OUTER SEGMENT RETINOL DEHYDROGENASE - SUBSTRATE-SPECIFICITY AND ROLE IN PHOTOTRANSDUCTION

被引:129
作者
PALCZEWSKI, K
JAGER, S
BUCZYLKO, J
CROUCH, RK
BREDBERG, DL
HOFMANN, KP
ASSONBATRES, MA
SAARI, JC
机构
[1] MED UNIV S CAROLINA, DEPT BIOCHEM, CHARLESTON, SC 29425 USA
[2] MED UNIV S CAROLINA, DEPT OPHTHALMOL, CHARLESTON, SC 29425 USA
[3] UNIV WASHINGTON, DEPT OPHTHALMOL, SEATTLE, WA 98195 USA
[4] UNIV WASHINGTON, DEPT PHARMACOL, SEATTLE, WA 98195 USA
[5] UNIV WASHINGTON, DEPT BIOCHEM, SEATTLE, WA 98195 USA
[6] UNIV FREIBURG, INST BIOPHYS STRAHLENBIOL, D-79104 FREIBURG, GERMANY
关键词
D O I
10.1021/bi00250a027
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 reaction catalyzed by all-trans-retinol dehydrogenase of rod outer segments completes the quenching of photoactivated rhodopsin and initiates the cycle of reactions leading to regeneration of visual pigment. The goal of this study was to determine the kinetic parameters of the dehydrogenase at physiological levels of bleaching, to investigate its specificity, and to determine its possible role in modulating phototransduction. Reduction of all-trans-retinal could be measured after bleaching <0.15% rhodopsin. Kinetic parameters for the forward reaction determined with endogenous all-trans-retinal were K-m = 1.1 mu M; V-max = 7 nmol/min/mg rhodopsin. The low enzymatic activity suggests that at high bleach rates, all-trans-retinal could accumulate, increasing the steady state level of bleaching intermediates or promoting formation of pseudophotoproducts. Active pseudophotoproducts, which stimulate G(t) activation and opsin phosphorylation by rhodopsin kinase, are formed with opsin and all-trans-retinal as well as retinal analogues lacking the 13 methyl or the terminal two carbons of the polyene chain. Addition of all-trans-retinol, NADP, and [P-32]ATP to rod outer segments increased rhodopsin phosphorylation. Kinetic parameters for the reverse reaction determined with exogenous all-trans-retinol were K-m = 10 mu M; V-max 11 nmol/min/mg rhodopsin. Our results support the hypothesis that all-trans-retinol dehydrogenase could influence the phototransduction cascade, including activities of G(t) rhodopsin kinase, and binding of arrestin, by impeding the recycling of rhodopsin at high bleach levels.
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页码:13741 / 13750
页数:10
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