Gene Ontology annotation through association of InterPro records with GO terms
Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity
Annotation inferences using phylogenetic trees
Gene Ontology annotation based on UniProtKB/Swiss-Prot Subcellular Location vocabulary mapping, accompanied by conservative changes to GO terms applied by UniProt
Electronic Gene Ontology annotations created by ARBA machine learning models
Cryptochromes: blue light receptors for plants and animals.
Arabidopsis contains at least four independent blue-light-activated signal transduction pathways.
Direct interaction of Arabidopsis cryptochromes with COP1 in light control development.
Circadian clock-regulated expression of phytochrome and cryptochrome genes in Arabidopsis.
The signaling mechanism of Arabidopsis CRY1 involves direct interaction with COP1.
Arabidopsis Mutants Lacking Blue Light-Dependent Inhibition of Hypocotyl Elongation.
Novel ATP-binding and autophosphorylation activity associated with Arabidopsis and human cryptochrome-1.
Second positive phototropism results from coordinated co-action of the phototropins and cryptochromes.
High-throughput protein localization in Arabidopsis using Agrobacterium-mediated transient expression of GFP-ORF fusions.
Role of structural plasticity in signal transduction by the cryptochrome blue-light photoreceptor.
N-terminal domain-mediated homodimerization is required for photoreceptor activity of Arabidopsis CRYPTOCHROME 1.
From The Cover: A role for Arabidopsis cryptochromes and COP1 in the regulation of stomatal opening.
Analysis of autophosphorylating kinase activities of Arabidopsis and human cryptochromes.
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AtCRY1 contains FAD and has autokinase activity in vitro.
"AtCry1, which contains near stoichiometric"
Cryptochrome-1-dependent execution of programmed cell death induced by singlet oxygen in Arabidopsis thaliana.
HY5 is a point of convergence between cryptochrome and cytokinin signalling pathways in Arabidopsis thaliana.
Distinct light and clock modulation of cytosolic free Ca2+ oscillations and rhythmic CHLOROPHYLL A/B BINDING PROTEIN2 promoter activity in Arabidopsis.
Separate functions for nuclear and cytoplasmic cryptochrome 1 during photomorphogenesis of Arabidopsis seedlings.
Distinct light-initiated gene expression and cell cycle programs in the shoot apex and cotyledons of Arabidopsis.
Conformational change induced by ATP binding correlates with enhanced biological function of Arabidopsis cryptochrome.
Differential petiole growth in Arabidopsis thaliana: photocontrol and hormonal regulation.
CRYPTOCHROME 1 is implicated in promoting R protein-mediated plant resistance to Pseudomonas syringae in Arabidopsis.
Arabidopsis cryptochrome-1 restrains lateral roots growth by inhibiting auxin transport.
Cryptochrome as a sensor of the blue/green ratio of natural radiation in Arabidopsis.
Cryptochrome 1 and phytochrome B control shade-avoidance responses in Arabidopsis via partially independent hormonal cascades.
Light-activated cryptochrome reacts with molecular oxygen to form a flavin-superoxide radical pair consistent with magnetoreception.
Arabidopsis cryptochrome 1 interacts with SPA1 to suppress COP1 activity in response to blue light.
Blue-light-dependent interaction of cryptochrome 1 with SPA1 defines a dynamic signaling mechanism.
Phototropins but not cryptochromes mediate the blue light-specific promotion of stomatal conductance, while both enhance photosynthesis and transpiration under full sunlight.
Magnetically sensitive light-induced reactions in cryptochrome are consistent with its proposed role as a magnetoreceptor.
Light-dependent, dark-promoted interaction between Arabidopsis cryptochrome 1 and phytochrome B proteins.
The CRYPTOCHROME1-dependent response to excess light is mediated through the transcriptional activators ZINC FINGER PROTEIN EXPRESSED IN INFLORESCENCE MERISTEM LIKE1 and ZML2 in Arabidopsis.
cry1 and GPA1 signaling genetically interact in hook opening and anthocyanin synthesis in Arabidopsis.
Network balance via CRY signalling controls the Arabidopsis circadian clock over ambient temperatures.
Strigolactone-regulated hypocotyl elongation is dependent on cryptochrome and phytochrome signaling pathways in Arabidopsis.
ATP binding and aspartate protonation enhance photoinduced electron transfer in plant cryptochrome.
The CNT1 Domain of Arabidopsis CRY1 Alone Is Sufficient to Mediate Blue Light Inhibition of Hypocotyl Elongation.
Blue-light dependent reactive oxygen species formation by Arabidopsis cryptochrome may define a novel evolutionarily conserved signaling mechanism.
Suppression of Arabidopsis flowering by near-null magnetic field is affected by light.
Cellular metabolites modulate in vivo signaling of Arabidopsis cryptochrome-1.
TCP2 positively regulates HY5/HYH and photomorphogenesis in Arabidopsis.
Cryptochromes Interact Directly with PIFs to Control Plant Growth in Limiting Blue Light.
Global Analysis of Membrane-associated Protein Oligomerization Using Protein Correlation Profiling.
Blue Light Regulates Secondary Cell Wall Thickening via MYC2/MYC4 Activation of the NST1-Directed Transcriptional Network in Arabidopsis.
Daytime temperature is sensed by phytochrome B in Arabidopsis through a transcriptional activator HEMERA.
Low Blue Light Enhances Phototropism by Releasing Cryptochrome1-Mediated Inhibition of PIF4 Expression.
Photoexcited Cryptochrome2 Interacts Directly with TOE1 and TOE2 in Flowering Regulation.
The blue light receptor CRY1 interacts with FIP37 to promote N(6) -methyladenosine RNA modification and photomorphogenesis in Arabidopsis.
A role for brassinosteroid signalling in decision-making processes in the Arabidopsis seedling.
Mutations throughout an Arabidopsis blue-light photoreceptor impair blue-light-responsive anthocyanin accumulation and inhibition of hypocotyl elongation.
Arabidopsis cryptochrome 1 is a soluble protein mediating blue light-dependent regulation of plant growth and development.
The CRY1 blue light photoreceptor of Arabidopsis interacts with phytochrome A in vitro.
Genetic interactions between phytochrome A, phytochrome B, and cryptochrome 1 during Arabidopsis development.
Two genetically separable phases of growth inhibition induced by blue light in Arabidopsis seedlings.
UniProtKB record for Arabidopsis thaliana CRY1 (Q43125)
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UniProt summarizes CRY1 as a blue-light absorbing flavoprotein with nucleo-cytoplasmic signaling roles.
"Blue-light absorbing flavoprotein that activates reversible flavin photoreduction."
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UniProt records CRY1 in cytoplasm, nucleus, and nuclear bodies.
"Subcellular location: Cytoplasm; Nucleus; Nucleus, PML body; present in nuclear bodies."
Falcon deep-research report for Arabidopsis CRY1
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The deep-research synthesis supports CRY1 as a FAD-dependent photoreceptor signaling switch.
"CRY1 binds FAD in its PHR domain and undergoes light-driven flavin redox cycling and conformational change."
PANTHER PTHR11455 cryptochrome family notes
PANTHER PTHR11455 reviewed entry table
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The cached PANTHER entry table places Q43125 in a CRYPTOCHROME-1 subfamily.
"Q43125,Cryptochrome-1,protein,3702,Arabidopsis thaliana,...,PTHR11455:SF50,CRYPTOCHROME-1"
GOA annotations for Arabidopsis CRY1
OpenScientist hypothesis report for CRY1 photolyase activity
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OpenScientist refuted the CRY1 deoxyribodipyrimidine photolyase activity hypothesis as family over-annotation from the mixed cryptochrome/photolyase family.
"The seed hypothesis is **refuted as a family over-annotation.** Arabidopsis CRY1 does not have deoxyribodipyrimidine photo-lyase activity."