Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY

Oldemeyer S, Franz S, Wenzel S, Essen L-O, Mittag M, Kottke T (2016)
Journal of Biological Chemistry 291(27): 14062-14071.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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Zeitschriftentitel
Journal of Biological Chemistry
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291
Zeitschriftennummer
27
Seite
14062-14071
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Oldemeyer S, Franz S, Wenzel S, Essen L-O, Mittag M, Kottke T. Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY. Journal of Biological Chemistry. 2016;291(27):14062-14071.
Oldemeyer, S., Franz, S., Wenzel, S., Essen, L. - O., Mittag, M., & Kottke, T. (2016). Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY. Journal of Biological Chemistry, 291(27), 14062-14071. doi:10.1074/jbc.m116.726976
Oldemeyer, S., Franz, S., Wenzel, S., Essen, L. - O., Mittag, M., and Kottke, T. (2016). Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY. Journal of Biological Chemistry 291, 14062-14071.
Oldemeyer, S., et al., 2016. Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY. Journal of Biological Chemistry, 291(27), p 14062-14071.
S. Oldemeyer, et al., “Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY”, Journal of Biological Chemistry, vol. 291, 2016, pp. 14062-14071.
Oldemeyer, S., Franz, S., Wenzel, S., Essen, L.-O., Mittag, M., Kottke, T.: Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY. Journal of Biological Chemistry. 291, 14062-14071 (2016).
Oldemeyer, Sabine, Franz, Sophie, Wenzel, Sandra, Essen, Lars-Oliver, Mittag, Maria, and Kottke, Tilman. “Essential Role of an Unusually Long-lived Tyrosyl Radical in the Response to Red Light of the Animal-like Cryptochrome aCRY”. Journal of Biological Chemistry 291.27 (2016): 14062-14071.

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Determination of Radical-Radical Distances in Light-Active Proteins and Their Implication for Biological Magnetoreception.
Nohr D, Paulus B, Rodriguez R, Okafuji A, Bittl R, Schleicher E, Weber S., Angew Chem Int Ed Engl 56(29), 2017
PMID: 28627073
Insights into the red algae and eukaryotic evolution from the genome of Porphyra umbilicalis (Bangiophyceae, Rhodophyta).
Brawley SH, Blouin NA, Ficko-Blean E, Wheeler GL, Lohr M, Goodson HV, Jenkins JW, Blaby-Haas CE, Helliwell KE, Chan CX, Marriage TN, Bhattacharya D, Klein AS, Badis Y, Brodie J, Cao Y, Collén J, Dittami SM, Gachon CMM, Green BR, Karpowicz SJ, Kim JW, Kudahl UJ, Lin S, Michel G, Mittag M, Olson BJSC, Pangilinan JL, Peng Y, Qiu H, Shu S, Singer JT, Smith AG, Sprecher BN, Wagner V, Wang W, Wang ZY, Yan J, Yarish C, Zäuner-Riek S, Zhuang Y, Zou Y, Lindquist EA, Grimwood J, Barry KW, Rokhsar DS, Schmutz J, Stiller JW, Grossman AR, Prochnik SE., Proc Natl Acad Sci U S A 114(31), 2017
PMID: 28716924
Single-Molecule Fluorescence Methods to Study Plant Hormone Signal Transduction Pathways.
Song S, Chang J, Ma C, Tan YW., Front Plant Sci 8(), 2017
PMID: 29163610

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