Data assimilation constrains new connections and components in a complex, eukaryotic circadian clock model
暂无分享,去创建一个
Takeshi Mizuno | Andrew J Millar | Alexandra Pokhilko | A. Millar | T. Mizuno | A. Pokhilko | Kirsten Knox | K. Edwards | Adrian J W Thomson | K. Stratford | Sarah K Hodge | Kieron D Edwards | Kirsten Knox | Adrian W Thomson | Kevin Stratford | S. K. Hodge
[1] Ghislain Breton,et al. A Functional Genomics Approach Reveals CHE as a Component of the Arabidopsis Circadian Clock , 2009, Science.
[2] Takeshi Mizuno,et al. The APRR1/TOC1 quintet implicated in circadian rhythms of Arabidopsis thaliana: I. Characterization with APRR1-overexpressing plants. , 2002, Plant & cell physiology.
[3] David Alabadí,et al. Dual Role of TOC1 in the Control of Circadian and Photomorphogenic Responses in Arabidopsis Online version contains Web-only data. Article, publication date, and citation information can be found at www.plantcell.org/cgi/doi/10.1105/tpc.006734. , 2003, The Plant Cell Online.
[4] P. Hardin,et al. Circadian rhythms from multiple oscillators: lessons from diverse organisms , 2005, Nature Reviews Genetics.
[5] A. Hall,et al. Response regulator homologues have complementary, light-dependent functions in the Arabidopsis circadian clock , 2003, Planta.
[6] Connor W. McEntee,et al. Network Discovery Pipeline Elucidates Conserved Time-of-Day–Specific cis-Regulatory Modules , 2007, PLoS genetics.
[7] T. Mizuno,et al. Rhythmic and light-inducible appearance of clock-associated pseudo-response regulator protein PRR9 through programmed degradation in the dark in Arabidopsis thaliana. , 2007, Plant & cell physiology.
[8] Serge Daan,et al. A functional analysis of circadian pacemakers in nocturnal rodents , 2005, Journal of comparative physiology.
[9] Jacky L. Snoep,et al. BioModels Database: a free, centralized database of curated, published, quantitative kinetic models of biochemical and cellular systems , 2005, Nucleic Acids Res..
[10] Anthony Hall,et al. Disruption of Hepatic Leptin Signaling Protects Mice From Age- and Diet-Related Glucose Intolerance , 2010, Diabetes.
[11] Serge Daan,et al. A functional analysis of circadian pacemakers in nocturnal rodents , 1976, Journal of comparative physiology.
[12] R. Green,et al. Posttranslational Regulation of CIRCADIAN CLOCK ASSOCIATED1 in the Circadian Oscillator of Arabidopsis1[W][OA] , 2009, Plant Physiology.
[13] Dmitri A. Nusinow,et al. FKF1 and GIGANTEA Complex Formation Is Required for Day-Length Measurement in Arabidopsis , 2007, Science.
[14] C. Robertson McClung,et al. Plant Circadian Rhythms , 2006, The Plant Cell Online.
[15] S. Kay,et al. PRR7 protein levels are regulated by light and the circadian clock in Arabidopsis. , 2007, The Plant journal : for cell and molecular biology.
[16] R. Green,et al. CIRCADIAN CLOCK ASSOCIATED1 Transcript Stability and the Entrainment of the Circadian Clock in Arabidopsis1[W][OA] , 2007, Plant Physiology.
[17] Anthony Hall,et al. FLOWERING LOCUS C Mediates Natural Variation in the High-Temperature Response of the Arabidopsis Circadian Clock[W] , 2006, The Plant Cell Online.
[18] C. R. McClung,et al. Enhancer Trapping Reveals Widespread Circadian Clock Transcriptional Control in Arabidopsis1[w] , 2003, Plant Physiology.
[19] Tsuyoshi Mizoguchi,et al. LHY and CCA1 are partially redundant genes required to maintain circadian rhythms in Arabidopsis. , 2002, Developmental cell.
[20] Takeshi Mizuno,et al. The Arabidopsis pseudo-response regulators, PRR5 and PRR7, coordinately play essential roles for circadian clock function. , 2005, Plant & cell physiology.
[21] T. Mizuno,et al. PSEUDO-RESPONSE REGULATORS 9, 7, and 5 Are Transcriptional Repressors in the Arabidopsis Circadian Clock[W][OA] , 2010, Plant Cell.
[22] T. Mizuno,et al. Molecular Dissection of the Promoter of the Light-Induced and Circadian-Controlled APRR9 Gene Encoding a Clock-Associated Component of Arabidopsis thaliana , 2005, Bioscience, biotechnology, and biochemistry.
[23] D. E. Somers,et al. Targeted degradation of TOC1 by ZTL modulates circadian function in Arabidopsis thaliana , 2003, Nature.
[24] Stacey L. Harmer,et al. Overlapping and Distinct Roles of PRR7 and PRR9 in the Arabidopsis Circadian Clock , 2005, Current Biology.
[25] S. Kay,et al. Positive and Negative Factors Confer Phase-Specific Circadian Regulation of Transcription in Arabidopsisw⃞ , 2005, The Plant Cell Online.
[26] Jay C Dunlap,et al. The Neurospora Circadian System , 2004, Journal of biological rhythms.
[27] S. Harmer,et al. GIGANTEA Acts in Blue Light Signaling and Has Biochemically Separable Roles in Circadian Clock and Flowering Time Regulation1[C][W][OA] , 2006, Plant Physiology.
[28] T. Mizuno,et al. Circadian waves of expression of the APRR1/TOC1 family of pseudo-response regulators in Arabidopsis thaliana: insight into the plant circadian clock. , 2000, Plant & cell physiology.
[29] Andrew J. Millar,et al. Reconstruction of transcriptional dynamics from gene reporter data using differential equations , 2008, Bioinform..
[30] Jose L Pruneda-Paz,et al. LUX ARRHYTHMO encodes a Myb domain protein essential for circadian rhythms. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[31] Anthony Hall,et al. Plant Circadian Clocks Increase Photosynthesis, Growth, Survival, and Competitive Advantage , 2005, Science.
[32] A. Millar. A Suite of Photoreceptors Entrains the Plant Circadian Clock , 2003, Journal of biological rhythms.
[33] Michael F. Covington,et al. Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development , 2008, Genome Biology.
[34] Christopher R. Myers,et al. Universally Sloppy Parameter Sensitivities in Systems Biology Models , 2007, PLoS Comput. Biol..
[35] Paul E. Brown,et al. Quantitative analysis of regulatory flexibility under changing environmental conditions , 2010, Molecular systems biology.
[36] E. Tobin,et al. CK2 phosphorylation of CCA1 is necessary for its circadian oscillator function in Arabidopsis. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[37] D. E. Somers,et al. Control of circadian rhythms and photoperiodic flowering by the Arabidopsis GIGANTEA gene. , 1999, Science.
[38] T. Mizuno,et al. Involvement of Arabidopsis clock-associated pseudo-response regulators in diurnal oscillations of gene expression in the presence of environmental time cues. , 2008, Plant & cell physiology.
[39] S. Mangan,et al. Structure and function of the feed-forward loop network motif , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[40] Anthony Hall,et al. The Molecular Basis of Temperature Compensation in the Arabidopsis Circadian Clock[W] , 2006, The Plant Cell Online.
[41] Karine David,et al. ZEITLUPE is a circadian photoreceptor stabilized by GIGANTEA in blue light. , 2007, Nature.
[42] Paul E. Brown,et al. Extension of a genetic network model by iterative experimentation and mathematical analysis , 2005, Molecular systems biology.
[43] T. Kiba,et al. Targeted Degradation of PSEUDO-RESPONSE REGULATOR5 by an SCFZTL Complex Regulates Clock Function and Photomorphogenesis in Arabidopsis thaliana[W] , 2007, The Plant Cell Online.