cryptochrome
Sign in to saveAlso known as cryptochromes, crys
Cryptochromes (from the Greek κρυπτός χρώμα, "hidden colour") are a class of flavoproteins found in plants and animals that are sensitive to blue light. They are involved in the circadian rhythms and the sensing of magnetic fields in a number of species. The name cryptochrome was proposed as a portmanteau combining the chromatic nature of the photoreceptor, and the cryptogamic organisms on which many blue-light studies were carried out.
Key facts
- Protein.PDB
- 4MLP
- Protein.name
- Cryptochrome-2
- Protein.image
- CRY1Pretty.png
- Protein.caption
- Crystallographic structure of Cryptochrome-1
- Protein.Symbol
- CRY2
- Protein.AltSymbols
- <!--
- Protein.IUPHAR_id
- 2876 -->
- Protein.EntrezGene
- 1408
- Protein.HGNCid
- 2385
- Protein.OMIM
- 603732
- Protein.RefSeq
- NP_066940
- Protein.UniProt
- Q16526
- Protein.Chromosome
- 12
- Protein.Arm
- q
- Protein.Band
- 23.3
via Wikipedia infobox
Research
3,404 papers- Drosophila Cryptochrome: Variations in Blue.Journal of biological rhythms · 2020
- Cryptochrome signaling in plants.Photochemistry and photobiology · 2007
- The cryptochrome-photolyase protein family in diatoms.Journal of plant physiology · 2017
- Stop CRYing! Inhibition of cryptochrome function by small proteins.Biochemical Society transactions · 2022
- Cryptochrome photoreceptors in green algae: Unexpected versatility of mechanisms and functions.Journal of plant physiology · 2017
via PubMed
Wikidata facts
Show 1 more fact
- Commons category
- Cryptochrome
Sources (2)
via Wikidata · CC0
~25 min read
Article
16 sectionsContents
- Discovery
- Evolutionary history
- Structure
- Function
- Phototropism
- Photomorphogenesis
- Light capture
- Iris function
- Circadian rhythm
- In ''Drosophila''
- In mammals
- ''Cry2''
- ''Cry1''
- Magnetoreception
- References
- External links
Cryptochromes (from the Greek κρυπτός χρώμα, "hidden colour") are a class of flavoproteins found in plants and animals that are sensitive to blue light. They are involved in the circadian rhythms and the sensing of magnetic fields in a number of species. The name cryptochrome was proposed as a portmanteau combining the chromatic nature of the photoreceptor, and the cryptogamic organisms on which many blue-light studies were carried out.
The genes CRY1 and CRY2 encode the proteins CRY1 and CRY2, respectively. Cryptochromes are classified into plant Cry and animal Cry. Animal Cry can be further categorized into insect type (Type I) and mammal-like (Type II). CRY1 is a circadian photoreceptor whereas CRY2 is a clock repressor which represses Clock/Cycle (Bmal1) complex in insects and vertebrates. In plants, blue-light photoreception can be used to cue developmental signals. Besides chlorophylls, cryptochromes are the only proteins known to form photoinduced radical-pairs in vivo. These appear to enable some animals to detect magnetic fields.