Nobuya Koike, PhD

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"Nobuya Koike"
Mean distance: 17.3 (cluster 31)
 
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Publications

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Inokawa H, Umemura Y, Shimba A, et al. (2020) Chronic circadian misalignment accelerates immune senescence and abbreviates lifespan in mice. Scientific Reports. 10: 2569
Doi M, Shimatani H, Atobe Y, et al. (2019) Non-coding cis-element of Period2 is essential for maintaining organismal circadian behaviour and body temperature rhythmicity. Nature Communications. 10: 2563
Hughes ME, Abruzzi KC, Allada R, et al. (2017) Guidelines for Genome-Scale Analysis of Biological Rhythms. Journal of Biological Rhythms. 748730417728663
Yoo SH, Kojima S, Shimomura K, et al. (2017) Period2 3'-UTR and microRNA-24 regulate circadian rhythms by repressing PERIOD2 protein accumulation. Proceedings of the National Academy of Sciences of the United States of America
Taniguchi M, Carreira MB, Cooper YA, et al. (2017) HDAC5 and Its Target Gene, Npas4, Function in the Nucleus Accumbens to Regulate Cocaine-Conditioned Behaviors. Neuron. 96: 130-144.e6
He B, Nohara K, Park N, et al. (2016) The Small Molecule Nobiletin Targets the Molecular Oscillator to Enhance Circadian Rhythms and Protect against Metabolic Syndrome. Cell Metabolism. 23: 610-21
Hosokawa T, Tsuchiya Y, Okubo N, et al. (2015) Robust Circadian Rhythm and Parathyroid Hormone-Induced Resetting during Hypertrophic Differentiation in ATDC5 Chondroprogenitor Cells. Acta Histochemica Et Cytochemica. 48: 165-71
Wang GZ, Hickey SL, Shi L, et al. (2015) Cycling Transcriptional Networks Optimize Energy Utilization on a Genome Scale. Cell Reports. 13: 1868-1880
Jeong K, He B, Nohara K, et al. (2015) Dual attenuation of proteasomal and autophagic BMAL1 degradation in Clock(Δ19/+) mice contributes to improved glucose homeostasis. Scientific Reports. 5: 12801
Nohara K, Shin Y, Park N, et al. (2015) Ammonia-lowering activities and carbamoyl phosphate synthetase 1 (Cps1) induction mechanism of a natural flavonoid. Nutrition & Metabolism. 12: 23
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