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Journal Abstract Search


118 related items for PubMed ID: 8001586

  • 1. Flies in the group Cyclorrhapha use (3S)-3-hydroxyretinal as a unique visual pigment chromophore.
    Seki T, Isono K, Ito M, Katsuta Y.
    Eur J Biochem; 1994 Dec 01; 226(2):691-6. PubMed ID: 8001586
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  • 3. Retinoid composition in the compound eyes of insects.
    Seki T, Fujishita S, Ito M, Matsuoka N, Tsukida K.
    Exp Biol; 1987 Dec 01; 47(2):95-103. PubMed ID: 3436407
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  • 4. Phyletic aspects of the distribution of 3-hydroxyretinal in the class Insecta.
    Smith WC, Goldsmith TH.
    J Mol Evol; 1990 Jan 01; 30(1):72-84. PubMed ID: 2107325
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  • 6. Separation and identification of geometric isomers of 3-hydroxyretinoids and occurrence in the eyes of insects.
    Goldsmith TH, Marks BC, Bernard GD.
    Vision Res; 1986 Jan 01; 26(11):1763-9. PubMed ID: 3617517
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  • 7. Composition and distribution of retinal and 3-hydroxyretinal in the compound eye of the dragonfly.
    Seki T, Fujishita S, Obana S.
    Exp Biol; 1989 Jan 01; 48(2):65-75. PubMed ID: 2920812
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  • 8. 4-Hydroxyretinal, a new visual pigment chromophore found in the bioluminescent squid, Watasenia scintillans.
    Matsui S, Seidou M, Uchiyama I, Sekiya N, Hiraki K, Yoshihara K, Kito Y.
    Biochim Biophys Acta; 1988 Sep 08; 966(3):370-4. PubMed ID: 3416013
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  • 9. Synthesis of 3-hydroxyretinal in the cytosol of the butterfly compound eye.
    Shimazaki Y, Eguchi E.
    Vision Res; 1993 Jan 08; 33(2):155-63. PubMed ID: 8447089
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  • 11. A fly, Drosophila melanogaster, forms 11-cis 3-hydroxyretinal in the dark.
    Seki T, Fujishita S, Ito M, Matsuoka N, Kobayashi C, Tsukida K.
    Vision Res; 1986 Jan 08; 26(2):255-8. PubMed ID: 3087059
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  • 12. Formation of visual pigment chromophores during the development of Xenopus laevis.
    Azuma M, Seki T, Fujishita S.
    Vision Res; 1988 Jan 08; 28(9):959-64. PubMed ID: 3254649
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  • 13. Comparative study on the chromophore binding sites of rod and red-sensitive cone visual pigments by use of synthetic retinal isomers and analogues.
    Fukada Y, Okano T, Shichida Y, Yoshizawa T, Trehan A, Mead D, Denny M, Asato AE, Liu RS.
    Biochemistry; 1990 Mar 27; 29(12):3133-40. PubMed ID: 2140051
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  • 15. Optical resolution of (+/-)-all-trans-3-hydroxyretinal by use of high-performance liquid chromatography.
    Ito M, Katsuta Y, Koyama M, Murakami M, Iwaki N, Okano A, Tsukida K.
    J Nutr Sci Vitaminol (Tokyo); 1992 Apr 27; 38(2):111-5. PubMed ID: 1506917
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  • 17. Chiral discrimination of 5,6-epoxy-3-dehydroretinal by aporetinochrome and cattle opsin.
    Seki T, Shingu K, Kito Y.
    Eur J Biochem; 1985 Mar 01; 147(2):255-62. PubMed ID: 3156036
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  • 18. The role of Drosophila ninaG oxidoreductase in visual pigment chromophore biogenesis.
    Ahmad ST, Joyce MV, Boggess B, O'Tousa JE.
    J Biol Chem; 2006 Apr 07; 281(14):9205-9. PubMed ID: 16464863
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  • 19. Maturation of major Drosophila rhodopsin, ninaE, requires chromophore 3-hydroxyretinal.
    Ozaki K, Nagatani H, Ozaki M, Tokunaga F.
    Neuron; 1993 Jun 07; 10(6):1113-9. PubMed ID: 8318232
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