Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
about
Delay-induced stochastic oscillations in gene regulationInterlocked feedback loops contribute to the robustness of the Neurospora circadian clockPhosphorylation of FREQUENCY protein by casein kinase II is necessary for the function of the Neurospora circadian clockLight controls growth and development via a conserved pathway in the fungal kingdomEpigenetic and Posttranslational Modifications in Light Signal Transduction and the Circadian Clock in Neurospora crassaRegulation of the Neurospora circadian clock by casein kinase IISimulation of E. coli gene regulation including overlapping cell cycles, growth, division, time delays and noiseBiological Significance of Photoreceptor Photocycle Length: VIVID Photocycle Governs the Dynamic VIVID-White Collar Complex Pool Mediating Photo-adaptation and Response to Changes in Light IntensityThe genetics of circadian rhythms in NeurosporaTranscription factors in light and circadian clock signaling networks revealed by genomewide mapping of direct targets for neurospora white collar complexThe Neurospora circadian clock: simple or complex?Cross talk between a fungal blue-light perception system and the cyclic AMP signaling pathwayDifferential activation of Escherichia coli chemoreceptors by blue-light stimuli.Light regulation of metabolic pathways in fungi.The Neurospora photoreceptor VIVID exerts negative and positive control on light sensing to achieve adaptation.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 crassaCircadian clocks: what makes them tick?Coiled-coil domain-mediated FRQ-FRQ interaction is essential for its circadian clock function in Neurospora.WC-2 mediates WC-1-FRQ interaction within the PAS protein-linked circadian feedback loop of Neurospora.Blue light adaptation and desensitization of light signal transduction in Neurospora crassa.Circadian clock-specific roles for the light response protein WHITE COLLAR-2.Direct transcriptional control of a p38 MAPK pathway by the circadian clock in Neurospora crassa.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 clockRoles for WHITE COLLAR-1 in circadian and general photoperception in Neurospora crassaThe circadian clock of Neurospora crassaGenome-wide characterization of light-regulated genes in Neurospora crassa.Circadian rhythms in Neurospora crassa: farnesol or geraniol allow expression of rhythmicity in the otherwise arrhythmic strains frq10, wc-1, and wc-2.FWD1-mediated degradation of FREQUENCY in Neurospora establishes a conserved mechanism for circadian clock regulation.Molecular mechanism of light responses in Neurospora: from light-induced transcription to photoadaptation.VIVID is a flavoprotein and serves as a fungal blue light photoreceptor for photoadaptationOf switches and hourglasses: regulation of subcellular traffic in circadian clocks by phosphorylation.PAS domain-mediated WC-1/WC-2 interaction is essential for maintaining the steady-state level of WC-1 and the function of both proteins in circadian clock and light responses of Neurospora.Circadian systems: different levels of complexityAlternative Use of DNA Binding Domains by the Neurospora White Collar Complex Dictates Circadian Regulation and Light Responses.Circadian rhythms in Neurospora crassa and other filamentous fungiThe frequency gene is required for temperature-dependent regulation of many clock-controlled genes in Neurospora crassa.The band mutation in Neurospora crassa is a dominant allele of ras-1 implicating RAS signaling in circadian output.Long and short isoforms of Neurospora clock protein FRQ support temperature-compensated circadian rhythms.
P2860
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P2860
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
description
1999 nî lūn-bûn
@nan
1999 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
1999 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
1999年の論文
@ja
1999年論文
@yue
1999年論文
@zh-hant
1999年論文
@zh-hk
1999年論文
@zh-mo
1999年論文
@zh-tw
1999年论文
@wuu
name
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@ast
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@en
type
label
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@ast
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@en
prefLabel
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@ast
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@en
P2093
P921
P356
P1433
P1476
Role of a white collar-1-white collar-2 complex in blue-light signal transduction.
@en
P2093
P304
P356
10.1093/EMBOJ/18.18.4961
P407
P577
1999-09-01T00:00:00Z