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Journal Abstract Search


171 related items for PubMed ID: 2819231

  • 1. Orientation of the protonated retinal Schiff base group in bacteriorhodopsin from absorption linear dichroism.
    Lin SW, Mathies RA.
    Biophys J; 1989 Oct; 56(4):653-60. PubMed ID: 2819231
    [Abstract] [Full Text] [Related]

  • 2. Orientation of the bacteriorhodopsin chromophore probed by polarized Fourier transform infrared difference spectroscopy.
    Earnest TN, Roepe P, Braiman MS, Gillespie J, Rothschild KJ.
    Biochemistry; 1986 Dec 02; 25(24):7793-8. PubMed ID: 3801443
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  • 4. Transmembrane location of retinal in bacteriorhodopsin by neutron diffraction.
    Hauss T, Grzesiek S, Otto H, Westerhausen J, Heyn MP.
    Biochemistry; 1990 May 22; 29(20):4904-13. PubMed ID: 2364067
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  • 6. Chromophore/protein and chromophore/anion interactions in halorhodopsin.
    Lanyi JK, Zimányi L, Nakanishi K, Derguini F, Okabe M, Honig B.
    Biophys J; 1988 Feb 22; 53(2):185-91. PubMed ID: 3345330
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  • 7. Structure of the retinal chromophore in sensory rhodopsin I from resonance Raman spectroscopy.
    Fodor SP, Gebhard R, Lugtenburg J, Bogomolni RA, Mathies RA.
    J Biol Chem; 1989 Nov 05; 264(31):18280-3. PubMed ID: 2808377
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  • 8. Retinal isomerization in bacteriorhodopsin is controlled by specific chromophore-protein interactions. A study with noncovalent artificial pigments.
    Aharoni A, Ottolenghi M, Sheves M.
    Biochemistry; 2001 Nov 06; 40(44):13310-9. PubMed ID: 11683641
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  • 9. Protein-chromophore interactions in bacteriorhodopsin: the effects of a change in surface potential.
    Swords NA, Wallace BA.
    Biochim Biophys Acta; 1991 Dec 09; 1070(2):313-20. PubMed ID: 1764449
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  • 10. Chromophore orientation in bacteriorhodopsin determined from the angular dependence of deuterium nuclear magnetic resonance spectra of oriented purple membranes.
    Moltke S, Nevzorov AA, Sakai N, Wallat I, Job C, Nakanishi K, Heyn MP, Brown MF.
    Biochemistry; 1998 Aug 25; 37(34):11821-35. PubMed ID: 9718305
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  • 11. Structure of the retinal chromophore in the hR578 form of halorhodopsin.
    Smith SO, Marvin MJ, Bogomolni RA, Mathies RA.
    J Biol Chem; 1984 Oct 25; 259(20):12326-9. PubMed ID: 6490613
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  • 12. Orientation of retinal in purple membrane determined by polarized Raman spectroscopy.
    Urabe H, Otomo J, Ikegami A.
    Biophys J; 1989 Dec 25; 56(6):1225-8. PubMed ID: 2611333
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  • 13. Halorhodopsin and sensory rhodopsin contain a C6-C7 s-trans retinal chromophore.
    Baselt DR, Fodor SP, van der Steen R, Lugtenburg J, Bogomolni RA, Mathies RA.
    Biophys J; 1989 Jan 25; 55(1):193-6. PubMed ID: 2930820
    [Abstract] [Full Text] [Related]

  • 14. Bacteriorhodopsin's M412 intermediate contains a 13-cis, 14-s-trans, 15-anti-retinal Schiff base chromophore.
    Ames JB, Fodor SP, Gebhard R, Raap J, van den Berg EM, Lugtenburg J, Mathies RA.
    Biochemistry; 1989 May 02; 28(9):3681-7. PubMed ID: 2751988
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  • 15. Effects of modifications of the retinal beta-ionone ring on archaebacterial sensory rhodopsin I.
    Yan B, Takahashi T, McCain DA, Rao VJ, Nakanishi K, Spudich JL.
    Biophys J; 1990 Mar 02; 57(3):477-83. PubMed ID: 2306497
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  • 16. Molecular dynamics study of the M412 intermediate of bacteriorhodopsin.
    Xu D, Sheves M, Schulten K.
    Biophys J; 1995 Dec 02; 69(6):2745-60. PubMed ID: 8599681
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  • 18. Analysis of the factors that influence the C=N stretching frequency of polyene Schiff bases. Implications for bacteriorhodopsin and rhodopsin.
    Gilson HS, Honig BH, Croteau A, Zarrilli G, Nakanishi K.
    Biophys J; 1988 Feb 02; 53(2):261-9. PubMed ID: 3345334
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