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The Plant Cell|November 28, 2014
Cellular metabolites enhance the light sensitivity of Arabidopsis cryptochrome through alternate electron transfer pathwaysChristopher Engelhard, Xuecong Wang, David Robles, et al.
The Journal of Biological Chemistry|March 16, 2007
The signaling state of Arabidopsis cryptochrome 2 contains flavin semiquinoneRoopa Banerjee, Erik Schleicher, Stefan Meier, et al.
Plos Genetics|May 12, 2020
UVR8-mediated inhibition of shade avoidance involves HFR1 stabilization in ArabidopsisEleni Tavridou, Emanuel Schmid-Siegert, Christian Fankhauser, et al.
The Journal of Biological Chemistry|June 18, 2009
Photoreduction of the folate cofactor in members of the photolyase familyJulia Moldt, Richard Pokorny, Christian Orth, et al.
Proceedings of the National Academy of Sciences of the United States of America|June 28, 2017
Local auxin production underlies a spatially restricted neighbor-detection response in ArabidopsisOlivier Michaud, Anne-Sophie Fiorucci, Ioannis Xenarios, et al.
European Journal of Biochemistry|July 9, 2003
Novel ATP-binding and autophosphorylation activity associated with Arabidopsis and human cryptochrome-1Jean-Pierre Bouly, Baldissera Giovani, Armin Djamei, et al.
The Plant Cell|June 29, 2012
Degradation of Arabidopsis CRY2 is regulated by SPA proteins and phytochrome AGuido Weidler, Sven Zur Oven-Krockhaus, Michael Heunemann, et al.
Plant Physiology|October 8, 2010
A gain-of-function mutation of Arabidopsis cryptochrome1 promotes floweringVivien Exner, Cristina Alexandre, Gesa Rosenfeldt, et al.
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