Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes

Tsuji K, Neumann E (1983)
Biophysical Chemistry 17(2): 153-163.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Tsuji, Kinko; Neumann, EberhardUniBi
Stichworte
Light scattering; Bacteriorhodopsin; Electric field; Membrane protein
Erscheinungsjahr
1983
Zeitschriftentitel
Biophysical Chemistry
Band
17
Ausgabe
2
Seite(n)
153-163
ISSN
0301-4622
Page URI
https://pub.uni-bielefeld.de/record/1774494

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Tsuji K, Neumann E. Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes. Biophysical Chemistry. 1983;17(2):153-163.
Tsuji, K., & Neumann, E. (1983). Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes. Biophysical Chemistry, 17(2), 153-163. https://doi.org/10.1016/0301-4622(83)80009-X
Tsuji, Kinko, and Neumann, Eberhard. 1983. “Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes”. Biophysical Chemistry 17 (2): 153-163.
Tsuji, K., and Neumann, E. (1983). Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes. Biophysical Chemistry 17, 153-163.
Tsuji, K., & Neumann, E., 1983. Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes. Biophysical Chemistry, 17(2), p 153-163.
K. Tsuji and E. Neumann, “Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes”, Biophysical Chemistry, vol. 17, 1983, pp. 153-163.
Tsuji, K., Neumann, E.: Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes. Biophysical Chemistry. 17, 153-163 (1983).
Tsuji, Kinko, and Neumann, Eberhard. “Conformational flexibility of membrane proteins in electric fields I. Ultraviolet absorbance and light scattering of bacteriorhodopsin in purple membranes”. Biophysical Chemistry 17.2 (1983): 153-163.
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8 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Membrane perturbation by an external electric field: a mechanism to permit molecular uptake.
Escoffre JM, Dean DS, Hubert M, Rols MP, Favard C., Eur Biophys J 36(8), 2007
PMID: 17576550
Proteins in electric fields and pressure fields: experimental results.
Fidy J, Balog E, Köhler M., Biochim Biophys Acta 1386(2), 1998
PMID: 9733987
Electrostatics and electrodynamics of bacteriorhodopsin.
Porschke D., Biophys J 71(6), 1996
PMID: 8968607
Electroconformational coupling and membrane protein function.
Tsong TY, Astumian RD., Prog Biophys Mol Biol 50(1), 1987
PMID: 3329744
Chemical electric field effects in biological macromolecules.
Neumann E., Prog Biophys Mol Biol 47(3), 1986
PMID: 3544052

38 References

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PMID: 6950390
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