Light-induced resetting of a circadian clock is mediated by a rapid increase in frequency transcript.
about
Neurospora WC-1 recruits SWI/SNF to remodel frequency and initiate a circadian cycleComprehensive modelling of the Neurospora circadian clock and its temperature compensationInterlocked feedback loops contribute to the robustness of the Neurospora circadian clockPhosphorylation of the Neurospora clock protein FREQUENCY determines its degradation rate and strongly influences the period length of the circadian clockVitamin B2-based blue-light photoreceptors in the retinohypothalamic tract as the photoactive pigments for setting the circadian clock in mammalsPhosphorylation of FREQUENCY protein by casein kinase II is necessary for the function of the Neurospora circadian clockControl of daily transcript oscillations in Drosophila by light and the circadian clock.Conserved regions of the timeless (tim) clock gene in Drosophila analyzed through phylogenetic and functional studiesBiological Significance of Photoreceptor Photocycle Length: VIVID Photocycle Governs the Dynamic VIVID-White Collar Complex Pool Mediating Photo-adaptation and Response to Changes in Light IntensityEvolutionary History of the Photolyase/Cryptochrome Superfamily in EukaryotesTranscription factors in light and circadian clock signaling networks revealed by genomewide mapping of direct targets for neurospora white collar complexCircadian rhythms from multiple oscillators: lessons from diverse organismsThe Neurospora circadian clock: simple or complex?PAS domains: internal sensors of oxygen, redox potential, and lightThe search for circadian clock components in humans: new perspectives for association studies.Non-optimal codon usage affects expression, structure and function of clock protein FRQFully codon-optimized luciferase uncovers novel temperature characteristics of the Neurospora clockBright to dim oscillatory response of the Neurospora circadian oscillatorSystems biology of the clock in Neurospora crassa.The circadian system of Arabidopsis thaliana: forward and reverse genetic approaches.Robustness from flexibility in the fungal circadian clock.Analysis of Light- and Carbon-Specific Transcriptomes Implicates a Class of G-Protein-Coupled Receptors in Cellulose Sensing.FRQ-interacting RNA helicase mediates negative and positive feedback in the Neurospora circadian clockCircadian regulation of a Drosophila homolog of the mammalian Clock gene: PER and TIM function as positive regulatorsLimit cycle models for circadian rhythms based on transcriptional regulation in Drosophila and Neurospora.The circadian clock of cyanobacteria.Genetic and molecular characterization of a cryptochrome from the filamentous fungus Neurospora crassa.Assignment of circadian function for the Neurospora clock gene frequency.Nuclear localization is required for function of the essential clock protein FRQ.The COP9 signalosome regulates the Neurospora circadian clock by controlling the stability of the SCFFWD-1 complexDistinct signaling pathways from the circadian clock participate in regulation of rhythmic conidiospore development in Neurospora crassaNeurospora clock-controlled gene 9 (ccg-9) encodes trehalose synthase: circadian regulation of stress responses and developmentCoiled-coil domain-mediated FRQ-FRQ interaction is essential for its circadian clock function in Neurospora.Modeling light adaptation in circadian clock: prediction of the response that stabilizes entrainmentCircadian clock-specific roles for the light response protein WHITE COLLAR-2.Isolation and characterization of a temperature-sensitive circadian clock mutant of Neurospora crassa.Differential effects of light and heat on the Drosophila circadian clock proteins PER and TIM.Seasonality and photoperiodism in fungi.Light and clock expression of the Neurospora clock gene frequency is differentially driven by but dependent on WHITE COLLAR-2.The PAS/LOV protein VIVID supports a rapidly dampened daytime oscillator that facilitates entrainment of the Neurospora circadian clock
P2860
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P2860
Light-induced resetting of a circadian clock is mediated by a rapid increase in frequency transcript.
description
1995 nî lūn-bûn
@nan
1995 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
1995 թվականի հունիսին հրատարակված գիտական հոդված
@hy
1995年の論文
@ja
1995年論文
@yue
1995年論文
@zh-hant
1995年論文
@zh-hk
1995年論文
@zh-mo
1995年論文
@zh-tw
1995年论文
@wuu
name
Light-induced resetting of a c ...... rease in frequency transcript.
@ast
Light-induced resetting of a c ...... rease in frequency transcript.
@en
Light-induced resetting of a c ...... rease in frequency transcript.
@nl
type
label
Light-induced resetting of a c ...... rease in frequency transcript.
@ast
Light-induced resetting of a c ...... rease in frequency transcript.
@en
Light-induced resetting of a c ...... rease in frequency transcript.
@nl
prefLabel
Light-induced resetting of a c ...... rease in frequency transcript.
@ast
Light-induced resetting of a c ...... rease in frequency transcript.
@en
Light-induced resetting of a c ...... rease in frequency transcript.
@nl
P2093
P921
P1433
P1476
Light-induced resetting of a c ...... rease in frequency transcript.
@en
P2093
Crosthwaite SK
P304
P356
10.1016/S0092-8674(05)80005-4
P407
P577
1995-06-01T00:00:00Z