Positively charged retinoids are potent and selective inhibitors of the trans-cis isornerization in the retinoid (visual) cycle

被引:106
作者
Golczak, M
Kuksa, V
Maeda, T
Moise, AR
Palczewski, K [1 ]
机构
[1] Univ Washington, Dept Ophthalmol, Seattle, WA 98195 USA
[2] Univ Washington, Dept Pharmacol, Seattle, WA 98195 USA
[3] Univ Washington, Dept Chem, Seattle, WA 98195 USA
关键词
retinal; rhodopsin; vitamin A; electroretinogram; retinal pigment epithelium;
D O I
10.1073/pnas.0503318102
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
In vertebrate retinal photoreceptors, photoisomerization of opsin-bound visual chromophore 11-cis-retinal to all-trans-retinal triggers phototransduction events. Regeneration of the chromophore is a critical step in restoring photoreceptors to their dark-adapted state. This regeneration process, called the retinoid cycle, takes place in the photoreceptor outer segments and in the retinal pigmented epithelium (RIPE). We have suggested that the regeneration of the chromophore might occur through a retinyl carbocation intermediate. Here, we provide evidence that isomerization is inhibited by positively charged retinoids, which could act as transition state analogs of the isomerization process. We demonstrate that retinylamine (Ret-NH2) potently and selectively inhibits the isomerization step of the retinoid cycle in vitro and in vivo. Ret-NH2 binds a protein(s) in the RIPE microsomes, but it does not bind RPE65, a protein implicated in the isomerization reaction. Although Ret-NH2 inhibits the regeneration of visual chromophore in rods and, in turn, severely attenuates rod responses, it has a much smaller effect on cone function in mice. Ret-NH2 interacts only at micromolar concentrations with retinoic acid receptor, does not activate retinoid-X receptor, and is not a substrate for CYP26s, the retinoic acid-metabolizing cytochrome P450 enzymes. Ret-NH2 can be a significant investigational tool to study the mechanism of regeneration of visual chromophore.
引用
收藏
页码:8162 / 8167
页数:6
相关论文
共 28 条
[1]   The retinoic acid-metabolizing enzyme, CYP26A1, is essential for normal hindbrain patterning, vertebral identity, and development of posterior structures [J].
Abu-Abed, S ;
Dollé, P ;
Metzger, D ;
Beckett, B ;
Chambon, P ;
Petkovich, M .
GENES & DEVELOPMENT, 2001, 15 (02) :226-240
[2]   A photoreceptor cell-specific ATP-binding transporter gene (ABCR) is mutated in recessive Stargardt macular dystrophy [J].
Allikmets, R ;
Singh, N ;
Sun, H ;
Shroyer, NE ;
Hutchinson, A ;
Chidambaram, A ;
Gerrard, B ;
Baird, L ;
Stauffer, D ;
Peiffer, A ;
Rattner, A ;
Smallwood, P ;
Li, YX ;
Anderson, KL ;
Lewis, RA ;
Nathans, J ;
Leppert, M ;
Dean, M ;
Lupski, JR .
NATURE GENETICS, 1997, 15 (03) :236-246
[3]   A decade of molecular biology of retinoic acid receptors [J].
Chambon, P .
FASEB JOURNAL, 1996, 10 (09) :940-954
[4]   G protein-coupled receptor rhodopsin: A prospectus [J].
Filipek, S ;
Stenkamp, RE ;
Teller, DC ;
Palczewski, K .
ANNUAL REVIEW OF PHYSIOLOGY, 2003, 65 :851-879
[5]   Isolation and characterization of unsaturated fatty acids as natural ligands for the retinoid-X receptor [J].
Goldstein, JT ;
Dobrzyn, A ;
Clagett-Dame, M ;
Pike, JW ;
DeLuca, HF .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2003, 420 (01) :185-193
[6]   Essential role of Ca2+-binding protein 4, a Cav1.4 channel regulator, in photoreceptor synaptic function [J].
Haeseleer, F ;
Imanishi, Y ;
Maeda, T ;
Possin, DE ;
Maeda, A ;
Lee, A ;
Rieke, F ;
Palczewski, K .
NATURE NEUROSCIENCE, 2004, 7 (10) :1079-1087
[7]   9-CIS RETINOIC ACID IS A HIGH-AFFINITY LIGAND FOR THE RETINOID-X RECEPTOR [J].
HEYMAN, RA ;
MANGELSDORF, DJ ;
DYCK, JA ;
STEIN, RB ;
EICHELE, G ;
EVANS, RM ;
THALLER, C .
CELL, 1992, 68 (02) :397-406
[8]  
HUBBARD R., 1971, Methods in Enzymology, V18C, P615, DOI 10.1016/S0076-6879(71)18045-7
[9]   Noninvasive two-photon imaging reveals retinyl ester storage structures in the eye [J].
Imanishi, Y ;
Batten, ML ;
Piston, DW ;
Baehr, W ;
Palczewski, K .
JOURNAL OF CELL BIOLOGY, 2004, 164 (03) :373-383
[10]   Retinoid cycle in the vertebrate retina: experimental approaches and mechanisms of isomerization [J].
Kuksa, V ;
Imanishi, Y ;
Batten, M ;
Palczewski, K ;
Moise, AR .
VISION RESEARCH, 2003, 43 (28) :2959-2981