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1 producing a variant of rhodopsin called P23H isorhodopsin.
2 retinal and its corresponding visual pigment isorhodopsin.
3 lated pigment was 487 nm, characteristic for isorhodopsin.
4 trans-retinal through an intermediate called isorhodopsin.
5 Meta II decay at a rate similar to wild type isorhodopsin.
6 significantly slower than that of wild type isorhodopsin.
7 al administration of 9-cis-retinal generated isorhodopsin, a rod photopigment, and restored light sen
8 ysis of 5-ethylisorhodopsin and the bicyclic isorhodopsin analogue, while 5-demethyl-8-methylisorhodo
9 protonated Schiff-base in bacteriorhodopsin, isorhodopsin and rhodopsin, all of which exhibit similar
10 ra of octopus rhodopsin, bathorhodopsin, and isorhodopsin at 120 K have been obtained as well as thos
11 rified homogenous 9-cis-retinal-bound bovine isorhodopsin [(b)isoRho] and ligand-bound (h)A(2A)R were
13 o be a function of the amount of regenerated isorhodopsin; high doses restored rod responses with nor
17 prolonged darkness (12 weeks) had increased isorhodopsin levels and electroretinogram a- and b-wave
19 opsin by photostimulation after formation of isorhodopsin or by incubation with beta-ionone (opsin ag
20 e scale, and experiments designed to enhance isorhodopsin production during photolysis showed no effe
22 ared Rpe65(-/-) mouse has been known to form isorhodopsin that employs 9-cis-retinal as the photosens
25 mediates observed after photolysis of bovine isorhodopsin, with the Lumi intermediate blue-shifted 5