[2022-]
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Shusaku Masuda, Nobuhiro Kurabayashi, Rina Nunokawa, Yuta Otobe, Hiroko Kozuka-Hata, Masaaki Oyama, Yuri Shibata, Jun-Ichiro Inoue, Michinori Koebis, Atsu Aiba, Hikari Yoshitane and Yoshitaka Fukada
TRAF7 determines circadian period through ubiquitination and degradation of DBP.
Communications biology 7(1) 1280-1280 (2024) doi.org/10.1038/s42003-024-07002-x
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Yuta Otobe, Eui Min Jeong, Shunsuke Ito, Yuta Shinohara, Nobuhiro Kurabayashi, Atsu Aiba, Yoshitaka Fukada, Jae Kyoung Kim and Hikari Yoshitane
Phosphorylation of DNA-binding domains of CLOCK-BMAL1 complex for PER-dependent inhibition in circadian clock of mammalian cells.
Proceedings of the National Academy of Sciences of the United States of America 121(23) e2316858121 (2024) doi.org/10.1073/pnas.2316858121
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Kosaku Masuda, Naohiro Kon, Kosuke Iizuka, Yoshitaka Fukada, Takeshi Sakurai and Arisa Hirano
Singularity response reveals entrainment properties in mammalian circadian clock.
Nature Communications 14(1) (2023) doi.org/10.1038/s41467-023-38392-x
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Naohiro Kon, Ryosuke Enoki, Hsin-tzu Wang and Yoshitaka Fukada
Roles of Ca2+ signaling in molecular clocks.
in “Circadian Clocks” (K. Honma & S. Honma eds.), Hokkaido University Press (2023)
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Yoshitaka Fukada
Commentary: Kinase signaling in distinct neuronal populations in mouse brain controls
sleep homeostasis and circadian clock.
Proc. Natl. Acad. Sci. USA, 120, e2303354120 (2023)doi.org/10.1073/pnas.2303354120
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Yoshitaka Fukada
Recent advances in biological rhythm and non-visual photoreception.
Biophys. Physicobiol., 20, e201013 (2023) doi.org/10.2142/biophysico.bppb-v20.s013
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Yasukazu Nakahata and Yoshitaka Fukada
Molecular connections between circadian clock and health/aging.
J. Biochem., 171, 473-476 (2022) doi: org/10.1093/jb/mvac028
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Shunsuke Takeuchi, Kimiko Shimizu, Yoshitaka Fukada and Kazuo Emoto
The circadian clock in the piriform cortex intrinsically tunes daily changes of odor-evoked neural activity.
Commun. Biol., 6, 323 (2023) doi: 10.1038/s42003-023-04691-8
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Kosaku Masuda, Naohiro Kon, Kosuke Iizuka, Yoshitaka Fukada, Takeshi Sakurai* & Arisa Hirano* (*Co-corresponding authors)
Singularity response reveals entrainment properties in mammalian circadian clock.
Nature Commun., 14, 2819 (2023) doi: 10.1038/s41467-023-38392-x
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Kimiko Shimizu*, Ken-ichi Inoue, Takao Oishi, Masahiko Takada, Yoshitaka Fukada* & Hiroo Imai* (*Co-corresponding authors)
Diurnal variation in declarative memory and the involvement of SCOP in cognitive functions in nonhuman primates.
Mol. Brain., 16, 31 (2023) doi: 10.1186/s13041-023-01022-0
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Hitomi Yamamoto-Matsuda, Keita Miyoshi, Mai Moritoh, Hikari Yoshitane, Yoshitaka Fukada, Kuniaki Saito*, Soichiro Yamanaka*, and Mikiko C. Siomi* (*Co-corresponding authors)
Lint-O cooperates with L(3)mbt in target gene suppression to maintain homeostasis in fly ovary and brain.
EMBO Reports, 23, e53813 (2022) doi: 10.15252/embr.202153813
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Yasuko O. Abe, Hikari Yoshitane*, Dae Wook Kim, Satoshi Kawakami, Michinori Koebis, Kazuki Nakao, Atsu Aiba, Jae Kyoung Kim* and Yoshitaka Fukada* (*Co-corresponding authors)
Rhythmic transcription of Bmal1 stabilizes the circadian timekeeping system in mammals.
Nature Commun., 13, 4652 (2022) doi: 10.1038/s41467-022-32326-9
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Taira Wada, Yukiko Yamamoto, Yukiko Takasugi, Taketo Uchiyama, Kaori Saito, Masahiro Suzuki, Makoto Uchiyama, Hikaru Yoshitane, Yoshitaka Fukada and Shigeki Shimba
Adiponectin regulates the circadian rhythm of glucose and lipid metabolism.
J. Endocrinol.254, 121-133, (2022) doi: 10.1530/JOE-22-0006
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Shingo Hiroki, Hikari Yoshitane, Hinako Mitsui, Hirofumi Sato, Chie Umatani, Shinji Kanda, Yoshitaka Fukada and Yuichi Iino
Molecular encoding and synaptic decoding of context during salt chemotaxis in C. elegans
Nature Commun., 13, 2928, (2022) doi: 10.1038/s41467-022-30279-7
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Yasukazu Nakahata and Yoshitaka Fukada
Molecular connections between circadian clock and helth/aging.
J. Biochem., 11;171(5):473-476, (2022) doi: 10.1093/jb/mvac028.
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Daisuke Kojima and Yoshitaka Fukada
Spectroscopic analysis of wavelength sensitivities of opsin-type photoreceptor.
in: Neuromethods “Circadian Clocks” (T. Hirota, M. Hatori, and S. Panda eds.) Springer, (2022)
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Satoshi Kawakami, Hikari Yoshitane, Taiki Morimura, Wataru Kimura and Yoshitaka Fukada
Diurnal shift of mouse activity by the deficiency of an-ageing-related gene Lmna.
J. Biochem. , mvac015 (2022), doi.org/10.1093/jb/mvac015
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Hikari Yoshitane*, Kiyomichi Imamura, Takenori Okubo, Yuta Otobe, Satoshi Kawakami, Shunsuke Ito, Toru Takumi, Kazuki Hattori, Isao Naguro, Hidenori Ichijo, and Yoshitaka Fukada* (*Co-corresponding authors).
mTOR-AKT signaling in cellular clock resetting trigerred by osmotic stress.
Antioxid. Redox Signal. (2022), doi.org/10.1089/ars.2021.0059