Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain

Kottke T, Dick B, Fedorov R, Schlichting I, Deutzmann R, Hegemann P (2003)
BIOCHEMISTRY 42(33): 9854-9862.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Kottke, TilmanUniBi ; Dick, Bernhard; Fedorov, Roman; Schlichting, Ilme; Deutzmann, Rainer; Hegemann, Peter
Erscheinungsjahr
2003
Zeitschriftentitel
BIOCHEMISTRY
Band
42
Ausgabe
33
Seite(n)
9854-9862
ISSN
0006-2960
eISSN
1520-4995
Page URI
https://pub.uni-bielefeld.de/record/1894720

Zitieren

Kottke T, Dick B, Fedorov R, Schlichting I, Deutzmann R, Hegemann P. Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain. BIOCHEMISTRY. 2003;42(33):9854-9862.
Kottke, T., Dick, B., Fedorov, R., Schlichting, I., Deutzmann, R., & Hegemann, P. (2003). Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain. BIOCHEMISTRY, 42(33), 9854-9862. https://doi.org/10.1021/bi034863r
Kottke, Tilman, Dick, Bernhard, Fedorov, Roman, Schlichting, Ilme, Deutzmann, Rainer, and Hegemann, Peter. 2003. “Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain”. BIOCHEMISTRY 42 (33): 9854-9862.
Kottke, T., Dick, B., Fedorov, R., Schlichting, I., Deutzmann, R., and Hegemann, P. (2003). Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain. BIOCHEMISTRY 42, 9854-9862.
Kottke, T., et al., 2003. Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain. BIOCHEMISTRY, 42(33), p 9854-9862.
T. Kottke, et al., “Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain”, BIOCHEMISTRY, vol. 42, 2003, pp. 9854-9862.
Kottke, T., Dick, B., Fedorov, R., Schlichting, I., Deutzmann, R., Hegemann, P.: Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain. BIOCHEMISTRY. 42, 9854-9862 (2003).
Kottke, Tilman, Dick, Bernhard, Fedorov, Roman, Schlichting, Ilme, Deutzmann, Rainer, and Hegemann, Peter. “Irreversible Photoreduction of Flavin in a Mutated Phot-LOV1 domain”. BIOCHEMISTRY 42.33 (2003): 9854-9862.

22 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

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Guo H, Zhu L, Dang C, Zhao J, Dick B., Phys Chem Chem Phys 20(25), 2018
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A search for radical intermediates in the photocycle of LOV domains.
Kutta RJ, Magerl K, Kensy U, Dick B., Photochem Photobiol Sci 14(2), 2015
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An Engineered Split Intein for Photoactivated Protein Trans-Splicing.
Wong S, Mosabbir AA, Truong K., PLoS One 10(8), 2015
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Signaling pathway of a photoactivable Rac1-GTPase in the early stages.
Peter E, Dick B, Baeurle SA., Proteins 80(5), 2012
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Indication for a radical intermediate preceding the signaling state in the LOV domain photocycle.
Bauer C, Rabl CR, Heberle J, Kottke T., Photochem Photobiol 87(3), 2011
PMID: 21255020
The primary photophysics of the Avena sativa phototropin 1 LOV2 domain observed with time-resolved emission spectroscopy.
van Stokkum IH, Gauden M, Crosson S, van Grondelle R, Moffat K, Kennis JT., Photochem Photobiol 87(3), 2011
PMID: 21261629
Visible light flavin photo-oxidation of methylbenzenes, styrenes and phenylacetic acids.
Lechner R, Kümmel S, König B., Photochem Photobiol Sci 9(10), 2010
PMID: 20838686
Excited flavin and pterin coenzyme molecules in evolution.
Kritsky MS, Telegina TA, Vechtomova YL, Kolesnikov MP, Lyudnikova TA, Golub OA., Biochemistry (Mosc) 75(10), 2010
PMID: 21166638
Primary reactions of the LOV2 domain of phototropin studied with ultrafast mid-infrared spectroscopy and quantum chemistry.
Alexandre MT, Domratcheva T, Bonetti C, van Wilderen LJ, van Grondelle R, Groot ML, Hellingwerf KJ, Kennis JT., Biophys J 97(1), 2009
PMID: 19580760
Algal sensory photoreceptors.
Hegemann P., Annu Rev Plant Biol 59(), 2008
PMID: 18444900
Phototropin receptor kinase activation by blue light.
Jones MA, Christie JM., Plant Signal Behav 3(1), 2008
PMID: 19704767
Hydrogen bond switching among flavin and amino acid side chains in the BLUF photoreceptor observed by ultrafast infrared spectroscopy.
Bonetti C, Mathes T, van Stokkum IH, Mullen KM, Groot ML, van Grondelle R, Hegemann P, Kennis JT., Biophys J 95(10), 2008
PMID: 18708458
A conserved glutamine plays a central role in LOV domain signal transmission and its duration.
Nash AI, Ko WH, Harper SM, Gardner KH., Biochemistry 47(52), 2008
PMID: 19063612
Flavin-based Blue-Light photosensors: a photobiophysics update.
Losi A., Photochem Photobiol 83(6), 2007
PMID: 18028200
Redox properties of LOV domains: chemical versus photochemical reduction, and influence on the photocycle.
Nöll G, Hauska G, Hegemann P, Lanzl K, Nöll T, von Sanden-Flohe M, Dick B., Chembiochem 8(18), 2007
PMID: 17990262
The phot LOV2 domain and its interaction with LOV1.
Guo H, Kottke T, Hegemann P, Dick B., Biophys J 89(1), 2005
PMID: 15879473
Absorption and emission spectroscopic characterisation of combined wildtype LOV1-LOV2 domain of phot from Chlamydomonas reinhardtii.
Song SH, Dick B, Zirak P, Penzkofer A, Schiereis T, Hegemann P., J Photochem Photobiol B 81(1), 2005
PMID: 16111889

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