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PUBMED FOR HANDHELDS

Journal Abstract Search


191 related items for PubMed ID: 31887021

  • 1. Allosteric Communication with the Retinal Chromophore upon Ion Binding in a Light-Driven Sodium Ion-Pumping Rhodopsin.
    Otomo A, Mizuno M, Inoue K, Kandori H, Mizutani Y.
    Biochemistry; 2020 Feb 04; 59(4):520-529. PubMed ID: 31887021
    [Abstract] [Full Text] [Related]

  • 2. FTIR spectroscopy of a light-driven compatible sodium ion-proton pumping rhodopsin at 77 K.
    Ono H, Inoue K, Abe-Yoshizumi R, Kandori H.
    J Phys Chem B; 2014 May 08; 118(18):4784-92. PubMed ID: 24773264
    [Abstract] [Full Text] [Related]

  • 3. Hydrogen-bonding network at the cytoplasmic region of a light-driven sodium pump rhodopsin KR2.
    Tomida S, Ito S, Inoue K, Kandori H.
    Biochim Biophys Acta Bioenerg; 2018 Sep 08; 1859(9):684-691. PubMed ID: 29852143
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  • 4. Solid-State Nuclear Magnetic Resonance Structural Study of the Retinal-Binding Pocket in Sodium Ion Pump Rhodopsin.
    Shigeta A, Ito S, Inoue K, Okitsu T, Wada A, Kandori H, Kawamura I.
    Biochemistry; 2017 Jan 31; 56(4):543-550. PubMed ID: 28040890
    [Abstract] [Full Text] [Related]

  • 5. Infrared spectroscopic analysis on structural changes around the protonated Schiff base upon retinal isomerization in light-driven sodium pump KR2.
    Tomida S, Ito S, Mato T, Furutani Y, Inoue K, Kandori H.
    Biochim Biophys Acta Bioenerg; 2020 Jul 01; 1861(7):148190. PubMed ID: 32194062
    [Abstract] [Full Text] [Related]

  • 6. Identification of intermediate conformations in the photocycle of the light-driven sodium-pumping rhodopsin KR2.
    Tsujimura M, Ishikita H.
    J Biol Chem; 2021 Jul 01; 296():100459. PubMed ID: 33639164
    [Abstract] [Full Text] [Related]

  • 7. Covalent Bond between the Lys-255 Residue and the Main Chain Is Responsible for Stable Retinal Chromophore Binding and Sodium-Pumping Activity of Krokinobacter Rhodopsin 2.
    Ochiai S, Ichikawa Y, Tomida S, Furutani Y.
    Biochemistry; 2023 Jun 20; 62(12):1849-1857. PubMed ID: 37243673
    [Abstract] [Full Text] [Related]

  • 8. Cation-Specific Conformations in a Dual-Function Ion-Pumping Microbial Rhodopsin.
    da Silva GF, Goblirsch BR, Tsai AL, Spudich JL.
    Biochemistry; 2015 Jun 30; 54(25):3950-9. PubMed ID: 26037033
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  • 10. Energetics and dynamics of a light-driven sodium-pumping rhodopsin.
    Suomivuori CM, Gamiz-Hernandez AP, Sundholm D, Kaila VRI.
    Proc Natl Acad Sci U S A; 2017 Jul 03; 114(27):7043-7048. PubMed ID: 28611220
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  • 13. Structural basis for Na(+) transport mechanism by a light-driven Na(+) pump.
    Kato HE, Inoue K, Abe-Yoshizumi R, Kato Y, Ono H, Konno M, Hososhima S, Ishizuka T, Hoque MR, Kunitomo H, Ito J, Yoshizawa S, Yamashita K, Takemoto M, Nishizawa T, Taniguchi R, Kogure K, Maturana AD, Iino Y, Yawo H, Ishitani R, Kandori H, Nureki O.
    Nature; 2015 May 07; 521(7550):48-53. PubMed ID: 25849775
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  • 14. Photochemistry of the Light-Driven Sodium Pump Krokinobacter eikastus Rhodopsin 2 and Its Implications on Microbial Rhodopsin Research: Retrospective and Perspective.
    Asido M, Wachtveitl J.
    J Phys Chem B; 2023 May 04; 127(17):3766-3773. PubMed ID: 36919947
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  • 16. Crystal structure of a light-driven sodium pump.
    Gushchin I, Shevchenko V, Polovinkin V, Kovalev K, Alekseev A, Round E, Borshchevskiy V, Balandin T, Popov A, Gensch T, Fahlke C, Bamann C, Willbold D, Büldt G, Bamberg E, Gordeliy V.
    Nat Struct Mol Biol; 2015 May 04; 22(5):390-5. PubMed ID: 25849142
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  • 18. Light-Driven Sodium-Pumping Rhodopsin: A New Concept of Active Transport.
    Kandori H, Inoue K, Tsunoda SP.
    Chem Rev; 2018 Nov 14; 118(21):10646-10658. PubMed ID: 29513519
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  • 20. Structural and functional consequences of the H180A mutation of the light-driven sodium pump KR2.
    Kriebel CN, Asido M, Kaur J, Orth J, Braun P, Becker-Baldus J, Wachtveitl J, Glaubitz C.
    Biophys J; 2023 Mar 21; 122(6):1003-1017. PubMed ID: 36528791
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