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For: Groma GI, Szabó G, Váró G. Direct measurement of picosecond charge separation in bacteriorhodopsin. Nature 1984. [DOI: 10.1038/308557a0] [Citation(s) in RCA: 43] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [What about the content of this article? (0)] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/09/2022]
Number Cited by Other Article(s)
1
Nonlinear electric response of the diffuse double layer to an abrupt charge displacement inside a biological membrane. Bioelectrochemistry 2022;146:108138. [DOI: 10.1016/j.bioelechem.2022.108138] [Citation(s) in RCA: 1] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 01/24/2022] [Revised: 04/15/2022] [Accepted: 04/20/2022] [Indexed: 12/18/2022]
2
Molaeirad A, Janfaza S, Karimi-Fard A, Mahyad B. Photocurrent generation by adsorption of two main pigments of Halobacterium salinarum on TiO2 nanostructured electrode. Biotechnol Appl Biochem 2014;62:121-5. [PMID: 24823651 DOI: 10.1002/bab.1244] [Citation(s) in RCA: 24] [Impact Index Per Article: 2.4] [Reference Citation Analysis] [Abstract] [Key Words] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 03/28/2014] [Accepted: 05/07/2014] [Indexed: 11/06/2022]
3
Janfaza S, Molaeirad A, Mohamadpour R, Khayati M, Mehrvand J. Efficient Bio-Nano Hybrid Solar Cells via Purple Membrane as Sensitizer. BIONANOSCIENCE 2013. [DOI: 10.1007/s12668-013-0118-1] [Citation(s) in RCA: 14] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/24/2022]
4
TRISSL HANSWILHELM. PHOTOELECTRIC MEASUREMENTS OF MEMBRANES. Photochem Photobiol 2008. [DOI: 10.1111/php.1990.51.6.793] [Citation(s) in RCA: 113] [Impact Index Per Article: 7.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
5
Bamann C, Kirsch T, Nagel G, Bamberg E. Spectral Characteristics of the Photocycle of Channelrhodopsin-2 and Its Implication for Channel Function. J Mol Biol 2008;375:686-94. [DOI: 10.1016/j.jmb.2007.10.072] [Citation(s) in RCA: 162] [Impact Index Per Article: 10.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Received: 08/21/2007] [Revised: 10/17/2007] [Accepted: 10/26/2007] [Indexed: 10/22/2022]
6
Groma GI, Colonna A, Lambry JC, Petrich JW, Váró G, Joffre M, Vos MH, Martin JL. Resonant optical rectification in bacteriorhodopsin. Proc Natl Acad Sci U S A 2004;101:7971-5. [PMID: 15148391 PMCID: PMC419541 DOI: 10.1073/pnas.0306789101] [Citation(s) in RCA: 32] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/18/2022]  Open
7
Xu J, Stickrath AB, Bhattacharya P, Nees J, Váró G, Hillebrecht JR, Ren L, Birge RR. Direct measurement of the photoelectric response time of bacteriorhodopsin via electro-optic sampling. Biophys J 2003;85:1128-34. [PMID: 12885657 PMCID: PMC1303231 DOI: 10.1016/s0006-3495(03)74549-4] [Citation(s) in RCA: 39] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/19/2022]  Open
8
Yao B, Xu D, Hou X, Hu K, Wang A. Kinetics of picosecond laser pulse induced charge separation and proton transfer in bacteriorhodopsin. JOURNAL OF BIOMEDICAL OPTICS 2003;8:48-52. [PMID: 12542379 DOI: 10.1117/1.1527626] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 01/25/2001] [Revised: 02/07/2002] [Accepted: 07/17/2002] [Indexed: 05/24/2023]
9
Tóth-Boconádi R, Hristova S, Keszthelyi L. Diamines reverse the direction on the bacteriorhodopsin proton pump. FEBS Lett 2001. [DOI: 10.1016/0014-5793(86)80153-3] [Citation(s) in RCA: 15] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
10
Dèr A, Fendler K, Keszthelyi L, Bamberg E. Primary charge separation in halorhodopsin. FEBS Lett 2001. [DOI: 10.1016/0014-5793(85)81248-5] [Citation(s) in RCA: 10] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/18/2022]
11
Primary charge separation in photosystem II involves two electrogenic steps. FEBS Lett 2001. [DOI: 10.1016/0014-5793(89)81168-8] [Citation(s) in RCA: 30] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/19/2022]
12
Wang J, El-Sayed MA. Time-resolved Fourier transform infrared spectroscopy of the polarizable proton continua and the proton pump mechanism of bacteriorhodopsin. Biophys J 2001;80:961-71. [PMID: 11159463 PMCID: PMC1301294 DOI: 10.1016/s0006-3495(01)76075-4] [Citation(s) in RCA: 35] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]  Open
13
Kaulen AD. Electrogenic processes and protein conformational changes accompanying the bacteriorhodopsin photocycle. BIOCHIMICA ET BIOPHYSICA ACTA 2000;1460:204-19. [PMID: 10984601 DOI: 10.1016/s0005-2728(00)00140-7] [Citation(s) in RCA: 22] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/16/2022]
14
SAGA Y, WATANABE T, KOYAMA K, MIYASAKA T. Buffer Effect on the Photoelectrochemical Response of Bacteriorhodopsin. ANAL SCI 1999. [DOI: 10.2116/analsci.15.365] [Citation(s) in RCA: 8] [Impact Index Per Article: 0.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/23/2022]
15
Saga Y, Watanabe T, Koyama K, Miyasaka T. Mechanism of Photocurrent Generation from Bacteriorhodopsin on Gold Electrodes. J Phys Chem B 1998. [DOI: 10.1021/jp982144u] [Citation(s) in RCA: 42] [Impact Index Per Article: 1.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
16
Trissl HW, Wulf K. Fast photovoltage measurements in photosynthesis. II. Experimental methods. ACTA ACUST UNITED AC 1995. [DOI: 10.1002/bspy.350010109] [Citation(s) in RCA: 16] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/09/2023]
17
Ikonen M, Sharonov A, Tkachenko N, Lemmetyinen H. The photovoltage signals of bacteriorhodopsin in Langmuir-Blodgett films with different molecular orientations. ACTA ACUST UNITED AC 1993. [DOI: 10.1002/amo.860020304] [Citation(s) in RCA: 28] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/09/2022]
18
Haronian D, Lewis A. Elements of a unique bacteriorhodopsin neural network architecture. APPLIED OPTICS 1991;30:597-608. [PMID: 20582029 DOI: 10.1364/ao.30.000597] [Citation(s) in RCA: 23] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Abstract] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 05/29/2023]
19
Takei H, Lewis A, Chen Z, Nebenzahl I. Implementing receptive fields with excitatory and inhibitory optoelectrical responses of bacteriorhodopsin films. APPLIED OPTICS 1991;30:500-509. [PMID: 20582020 DOI: 10.1364/ao.30.000500] [Citation(s) in RCA: 47] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 05/29/2023]
20
On the action spectrum of the photoelectric transients of bacteriorhodopsin in solid-state films. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS 1991. [DOI: 10.1016/s0005-2728(05)80281-6] [Citation(s) in RCA: 15] [Impact Index Per Article: 0.5] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/21/2022]
21
Birge RR, Zhang C. Two‐photon double resonance spectroscopy of bacteriorhodopsin. Assignment of the electronic and dipolar properties of the low‐lying1A*−g‐like and1B*+u‐like π, π* states. J Chem Phys 1990. [DOI: 10.1063/1.458206] [Citation(s) in RCA: 143] [Impact Index Per Article: 4.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/14/2022]  Open
22
Birge RR. Nature of the primary photochemical events in rhodopsin and bacteriorhodopsin. BIOCHIMICA ET BIOPHYSICA ACTA 1990;1016:293-327. [PMID: 2184895 DOI: 10.1016/0005-2728(90)90163-x] [Citation(s) in RCA: 302] [Impact Index Per Article: 8.9] [Reference Citation Analysis] [MESH Headings] [Grants] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 12/30/2022]
23
Trissl HW, Breton J, Deprez J, Dobek A, Leibl W. Trapping kinetics, annihilation, and quantum yield in the photosynthetic purple bacterium Rps. viridis as revealed by electric measurement of the primary charge separation. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS 1990. [DOI: 10.1016/0005-2728(90)90037-5] [Citation(s) in RCA: 27] [Impact Index Per Article: 0.8] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/25/2022]
24
Holzwarth AR. Applications of ultrafast laser spectroscopy for the study of biological systems. Q Rev Biophys 1989;22:239-326. [PMID: 2695961 DOI: 10.1017/s0033583500002985] [Citation(s) in RCA: 65] [Impact Index Per Article: 1.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/02/2023]
25
Trissl HW, Gärtner W, Leibl W. Reversed picosecond charge displacement from the photoproduct K of bacteriorhodopsin demonstrated photoelectrically. Chem Phys Lett 1989. [DOI: 10.1016/0009-2614(89)87381-6] [Citation(s) in RCA: 26] [Impact Index Per Article: 0.7] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/26/2022]
26
Tsong TY, Liu DS, Chauvin F, Astumian RD. Resonance electroconformational coupling: a proposed mechanism for energy and signal transductions by membrane proteins. Biosci Rep 1989;9:13-26. [PMID: 2655737 DOI: 10.1007/bf01117508] [Citation(s) in RCA: 30] [Impact Index Per Article: 0.9] [Reference Citation Analysis] [Abstract] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/02/2023]  Open
27
Trissl HW, Breton J, Deprez J, Leibl W. Primary electrogenic reactions of Photosystem II as probed by the light-gradient method. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS 1987. [DOI: 10.1016/0005-2728(87)90052-1] [Citation(s) in RCA: 42] [Impact Index Per Article: 1.1] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 10/27/2022]
28
861 — Charge motion inside the bacteriorhodopsin molecule. ACTA ACUST UNITED AC 1986. [DOI: 10.1016/0302-4598(86)85032-2] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/23/2022]
29
Hong FT. The bacteriorhodopsin model membrane system as a prototype molecular computing element. Biosystems 1986;19:223-36. [PMID: 3779047 DOI: 10.1016/0303-2647(86)90041-9] [Citation(s) in RCA: 54] [Impact Index Per Article: 1.4] [Reference Citation Analysis] [Abstract] [MESH Headings] [Grants] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/07/2023]
30
Tiede DM. Incorporation of membrane proteins into interfacial films: model membranes for electrical and structural characterization. BIOCHIMICA ET BIOPHYSICA ACTA 1985;811:357-79. [PMID: 3910106 DOI: 10.1016/0304-4173(85)90007-2] [Citation(s) in RCA: 58] [Impact Index Per Article: 1.5] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 01/08/2023]
31
Trissl HW. I. Primary electrogenic processes in bacteriorhodopsin probed by photoelectric measurements with capacitative metal electrodes. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS 1985. [DOI: 10.1016/0005-2728(85)90088-x] [Citation(s) in RCA: 22] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 11/26/2022]
32
Petrich JW, Fleming GR. Ultrafast processes in biology. Photochem Photobiol 1984;40:775-80. [PMID: 6395144 DOI: 10.1111/j.1751-1097.1984.tb04651.x] [Citation(s) in RCA: 5] [Impact Index Per Article: 0.1] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 01/20/2023]
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