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The bacteriorhodopsin gene.
Proc Natl Acad Sci U S A. 1981 Nov;78(11):6744-8
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The halo-opsin gene. II. Sequence, primary structure of halorhodopsin and comparison with bacteriorhodopsin.
EMBO J. 1987 Jan;6(1):265-73
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Detection of specific sequences among DNA fragments separated by gel electrophoresis.
J Mol Biol. 1975 Nov 5;98(3):503-17
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Path of the polypeptide in bacteriorhodopsin.
Proc Natl Acad Sci U S A. 1980 Apr;77(4):2023-7
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Chromophore equilibria in bacteriorhodopsin.
Biophys J. 1979 Nov;28(2):211-30
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Linking regions between helices in bacteriorhodopsin revealed.
Biophys J. 1982 Mar;37(3):589-602
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Halorhodopsin is a light-driven chloride pump.
J Biol Chem. 1982 Sep 10;257(17):10306-13
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A proton motive force transducer and its role in proton pumps, proton engines, tobacco mosaic virus assembly and hemoglobin allosterism.
J Theor Biol. 1982 Jul 7;97(1):95-127
PMID: 6290796
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Identification of a third rhodopsin-like pigment in phototactic Halobacterium halobium.
Proc Natl Acad Sci U S A. 1982 Oct;79(20):6250-4
PMID: 6959114
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PEPPLOT, a protein secondary structure analysis program for the UWGCG sequence analysis software package.
Nucleic Acids Res. 1986 Jan 10;14(1):327-34
PMID: 3753771
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Hypothesis about the function of membrane-buried proline residues in transport proteins.
Proc Natl Acad Sci U S A. 1986 Feb;83(4):917-21
PMID: 3456574
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Halorhodopsin: a light-driven chloride ion pump.
Annu Rev Biophys Biophys Chem. 1986;15:11-28
PMID: 2424472
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Identifying nonpolar transbilayer helices in amino acid sequences of membrane proteins.
Annu Rev Biophys Biophys Chem. 1986;15:321-53
PMID: 3521657
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A sensitive procedure to compare amino acid sequences.
J Mol Biol. 1987 Jan 20;193(2):385-96
PMID: 3037088
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Progressive sequence alignment as a prerequisite to correct phylogenetic trees.
J Mol Evol. 1987;25(4):351-60
PMID: 3118049
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Bacteriorhodopsin, a membrane protein that uses light to translocate protons.
J Biol Chem. 1988 Jun 5;263(16):7439-42
PMID: 2836382
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Amino acid preferences for specific locations at the ends of alpha helices.
Science. 1988 Jun 17;240(4859):1648-52
PMID: 3381086
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Replacement of aspartic residues 85, 96, 115, or 212 affects the quantum yield and kinetics of proton release and uptake by bacteriorhodopsin.
Proc Natl Acad Sci U S A. 1989 Jan;86(2):529-33
PMID: 2536166
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Replacement of aspartic acid-96 by asparagine in bacteriorhodopsin slows both the decay of the M intermediate and the associated proton movement.
Proc Natl Acad Sci U S A. 1989 Apr;86(7):2167-71
PMID: 2648392
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Phylogenies from molecular sequences: inference and reliability.
Annu Rev Genet. 1988;22:521-65
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Two pumps, one principle: light-driven ion transport in halobacteria.
Trends Biochem Sci. 1989 Feb;14(2):57-61
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Role of aspartate-96 in proton translocation by bacteriorhodopsin.
Proc Natl Acad Sci U S A. 1989 Jul;86(13):4943-7
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Bacteriorhodopsin mutants of Halobacterium sp. GRB. I. The 5-bromo-2'-deoxyuridine selection as a method to isolate point mutants in halobacteria.
J Biol Chem. 1989 Aug 5;264(22):13043-8
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Bacteriorhodopsin mutants of Halobacterium sp. GRB. II. Characterization of mutants.
J Biol Chem. 1989 Aug 5;264(22):13049-56
PMID: 2568992
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Aspartic acids 96 and 85 play a central role in the function of bacteriorhodopsin as a proton pump.
EMBO J. 1989 Jun;8(6):1657-63
PMID: 2548851
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A defective proton pump, point-mutated bacteriorhodopsin Asp96----Asn is fully reactivated by azide.
EMBO J. 1989 Nov;8(11):3477-82
PMID: 2555165
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Primary structure of sensory rhodopsin I, a prokaryotic photoreceptor.
EMBO J. 1989 Dec 20;8(13):3963-71
PMID: 2591367
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Isolation of a gene that encodes a new retinal protein, archaerhodopsin, from Halobacterium sp. aus-1.
J Biol Chem. 1989 Dec 15;264(35):20859-62
PMID: 2592356
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Fourier transform infrared evidence for proline structural changes during the bacteriorhodopsin photocycle.
Proc Natl Acad Sci U S A. 1989 Dec;86(24):9832-5
PMID: 2602377
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The primary structure of a halorhodopsin from Natronobacterium pharaonis. Structural, functional and evolutionary implications for bacterial rhodopsins and halorhodopsins.
J Biol Chem. 1990 Jan 25;265(3):1253-60
PMID: 2104837
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Substitution of amino acids Asp-85, Asp-212, and Arg-82 in bacteriorhodopsin affects the proton release phase of the pump and the pK of the Schiff base.
Proc Natl Acad Sci U S A. 1990 Feb;87(3):1018-22
PMID: 2153966
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Substitution of membrane-embedded aspartic acids in bacteriorhodopsin causes specific changes in different steps of the photochemical cycle.
Biochemistry. 1989 Dec 26;28(26):10035-42
PMID: 2575917
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The structure of bacteriorhodopsin and its relevance to the visual opsins and other seven-helix G-protein coupled receptors.
Philos Trans R Soc Lond B Biol Sci. 1990 Jan 30;326(1236):379-89
PMID: 1970644
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Model for the structure of bacteriorhodopsin based on high-resolution electron cryo-microscopy.
J Mol Biol. 1990 Jun 20;213(4):899-929
PMID: 2359127
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Time-resolved X-ray diffraction study of structural changes associated with the photocycle of bacteriorhodopsin.
EMBO J. 1991 Mar;10(3):521-6
PMID: 2001671
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Wild-type and mutant bacteriorhodopsins D85N, D96N, and R82Q: purification to homogeneity, pH dependence of pumping, and electron diffraction.
Biochemistry. 1991 Mar 26;30(12):3088-98
PMID: 1848786
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Bacteriorhodopsin mutants containing single substitutions of serine or threonine residues are all active in proton translocation.
J Biol Chem. 1991 Apr 15;266(11):6919-27
PMID: 1849896
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Alternative translocation of protons and halide ions by bacteriorhodopsin.
Proc Natl Acad Sci U S A. 1991 Jun 1;88(11):4751-5
PMID: 1647014
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Archaerhodopsin-2, from Halobacterium sp. aus-2 further reveals essential amino acid residues for light-driven proton pumps.
Arch Biochem Biophys. 1991 Apr;286(1):107-10
PMID: 1654776
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The photocycle of the chloride pump halorhodopsin. I: Azide-catalyzed deprotonation of the chromophore is a side reaction of photocycle intermediates inactivating the pump.
EMBO J. 1985 Sep;4(9):2347-50
PMID: 15938053
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The photocycle of the chloride pump halorhodopsin. II: Quantum yields and a kinetic model.
EMBO J. 1985 Sep;4(9):2351-6
PMID: 15938054
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Rhodopsin-like protein from the purple membrane of Halobacterium halobium.
Nat New Biol. 1971 Sep 29;233(39):149-52
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