Plant cryptochromes are central blue light receptors for the control of land plant and algal development including the circadian clock and the cell cycle. Cryptochromes share a photolyase homology region with about 500 amino acids and bind the chromophore flavin adenine dinucleotide. Characteristic for plant cryptochromes is a conserved aspartic acid close to flavin and an exceptionally long C-terminal extension. The mechanism of activation by excitation and reduction of the chromophore flavin adenine dinucleotide has been controversially discussed for many years. Various spectroscopic techniques have contributed to our understanding of plant cryptochromes by providing high time resolution, ambient conditions and even in-cell approaches. As...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes and DNA photolyases are highly homologous flavoproteins that accomplish completely dif...
Gött-Zink L, Kottke T. Plant Cryptochromes Illuminated: A Spectroscopic Perspective on the Mechanism...
Gött-Zink L, Kottke T. Plant Cryptochromes Illuminated: A Spectroscopic Perspective on the Mechanism...
AbstractEven though the plant photoreceptors cryptochromes were discovered more than 20years ago, th...
Cryptochromes are a class of flavoprotein blue-light signaling receptors found in plants, animals, a...
International audienceEven though the plant photoreceptors cryptochromes were discovered more than 2...
Cryptochromes are blue-light photoreceptors that regulate a variety of responses in animals and plan...
AbstractCryptochrome blue light photoreceptors share sequence similarity to photolyases, flavoprotei...
Beel B, Prager K, Spexard M, et al. A Flavin-Binding Cryptochrome Photoreceptor Responds to Both Blu...
Plant cryptochromes are photosensory receptors that regulate various central aspects of plant growth...
Schröder L, Oldemeyer S, Kottke T. Time-Resolved Infrared Spectroscopy on Plant Cryptochrome—Relevan...
AbstractCryptochromes are flavin-containing blue light photoreceptors related to photolyases—they ar...
Cryptochromes are blue light receptors with multiple signaling roles in plants and animals. Plant cr...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes and DNA photolyases are highly homologous flavoproteins that accomplish completely dif...
Gött-Zink L, Kottke T. Plant Cryptochromes Illuminated: A Spectroscopic Perspective on the Mechanism...
Gött-Zink L, Kottke T. Plant Cryptochromes Illuminated: A Spectroscopic Perspective on the Mechanism...
AbstractEven though the plant photoreceptors cryptochromes were discovered more than 20years ago, th...
Cryptochromes are a class of flavoprotein blue-light signaling receptors found in plants, animals, a...
International audienceEven though the plant photoreceptors cryptochromes were discovered more than 2...
Cryptochromes are blue-light photoreceptors that regulate a variety of responses in animals and plan...
AbstractCryptochrome blue light photoreceptors share sequence similarity to photolyases, flavoprotei...
Beel B, Prager K, Spexard M, et al. A Flavin-Binding Cryptochrome Photoreceptor Responds to Both Blu...
Plant cryptochromes are photosensory receptors that regulate various central aspects of plant growth...
Schröder L, Oldemeyer S, Kottke T. Time-Resolved Infrared Spectroscopy on Plant Cryptochrome—Relevan...
AbstractCryptochromes are flavin-containing blue light photoreceptors related to photolyases—they ar...
Cryptochromes are blue light receptors with multiple signaling roles in plants and animals. Plant cr...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes are photolyase-like blue/UV-A light receptors that regulate various light developmenta...
Cryptochromes and DNA photolyases are highly homologous flavoproteins that accomplish completely dif...