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Hidesato Ogawa

Showing results (21-30 of 30) with videos related to

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Molecular Endocrinology (Baltimore, Md.)|June 12, 2004
Small ubiquitin-like modifier 1 (SUMO-1) modification of the synergy control motif of Ad4 binding protein/steroidogenic factor 1 (Ad4BP/SF-1) regulates synergistic transcription between Ad4BP/SF-1 and Sox9Tomoko Komatsu, Hirofumi Mizusaki, Tokuo Mukai, et al.
Nature|April 18, 2003
Coordinated histone modifications mediated by a CtBP co-repressor complexYujiang Shi, Jun-ichi Sawada, Guangchao Sui, et al.
The Journal of Biological Chemistry|August 6, 2022
Transcriptional coregulator Ess2 controls survival of post-thymic CD4<sup>+</sup> T cells through the Myc and IL-7 signaling pathwaysIchiro Takada, Shinya Hidano, Sayuri Takahashi, et al.
Development (Cambridge, England)|January 18, 2008
Mechanism of asymmetric ovarian development in chick embryosYoshiyasu Ishimaru, Tomoko Komatsu, Megumi Kasahara, et al.
Endocrinology|October 22, 2010
Abnormal epithelial cell polarity and ectopic epidermal growth factor receptor (EGFR) expression induced in Emx2 KO embryonic gonadsMasatomo Kusaka, Yuko Katoh-Fukui, Hidesato Ogawa, et al.
Scientific Reports|March 23, 2017
Lysosomal activity maintains glycolysis and cyclin E1 expression by mediating Ad4BP/SF-1 stability for proper steroidogenic cell growthJhih-Siang Syu, Takashi Baba, Jyun-Yuan Huang, et al.
Communications Biology|October 2, 2018
Ad4BP/SF-1 regulates cholesterol synthesis to boost the production of steroidsTakashi Baba, Hiroyuki Otake, Miki Inoue, et al.
Nature Communications|April 15, 2014
Glycolytic genes are targets of the nuclear receptor Ad4BP/SF-1Takashi Baba, Hiroyuki Otake, Tetsuya Sato, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 3, 2024
HKDC1, a target of TFEB, is essential to maintain both mitochondrial and lysosomal homeostasis, preventing cellular senescenceMengying Cui, Koji Yamano, Kenichi Yamamoto, et al.
Cell Reports|March 2, 2022
Age-associated decline of MondoA drives cellular senescence through impaired autophagy and mitochondrial homeostasisHitomi Yamamoto-Imoto, Satoshi Minami, Tatsuya Shioda, et al.
Pageof 3

Showing results (21-30 of 30) with videos related to

Sort By:
Pageof 3
You have reached the last page of results.This site can display upto 30 results.
Molecular Endocrinology (Baltimore, Md.)|June 12, 2004
Small ubiquitin-like modifier 1 (SUMO-1) modification of the synergy control motif of Ad4 binding protein/steroidogenic factor 1 (Ad4BP/SF-1) regulates synergistic transcription between Ad4BP/SF-1 and Sox9Tomoko Komatsu, Hirofumi Mizusaki, Tokuo Mukai, et al.
Nature|April 18, 2003
Coordinated histone modifications mediated by a CtBP co-repressor complexYujiang Shi, Jun-ichi Sawada, Guangchao Sui, et al.
The Journal of Biological Chemistry|August 6, 2022
Transcriptional coregulator Ess2 controls survival of post-thymic CD4<sup>+</sup> T cells through the Myc and IL-7 signaling pathwaysIchiro Takada, Shinya Hidano, Sayuri Takahashi, et al.
Development (Cambridge, England)|January 18, 2008
Mechanism of asymmetric ovarian development in chick embryosYoshiyasu Ishimaru, Tomoko Komatsu, Megumi Kasahara, et al.
Endocrinology|October 22, 2010
Abnormal epithelial cell polarity and ectopic epidermal growth factor receptor (EGFR) expression induced in Emx2 KO embryonic gonadsMasatomo Kusaka, Yuko Katoh-Fukui, Hidesato Ogawa, et al.
Scientific Reports|March 23, 2017
Lysosomal activity maintains glycolysis and cyclin E1 expression by mediating Ad4BP/SF-1 stability for proper steroidogenic cell growthJhih-Siang Syu, Takashi Baba, Jyun-Yuan Huang, et al.
Communications Biology|October 2, 2018
Ad4BP/SF-1 regulates cholesterol synthesis to boost the production of steroidsTakashi Baba, Hiroyuki Otake, Miki Inoue, et al.
Nature Communications|April 15, 2014
Glycolytic genes are targets of the nuclear receptor Ad4BP/SF-1Takashi Baba, Hiroyuki Otake, Tetsuya Sato, et al.
Proceedings of the National Academy of Sciences of the United States of America|January 3, 2024
HKDC1, a target of TFEB, is essential to maintain both mitochondrial and lysosomal homeostasis, preventing cellular senescenceMengying Cui, Koji Yamano, Kenichi Yamamoto, et al.
Cell Reports|March 2, 2022
Age-associated decline of MondoA drives cellular senescence through impaired autophagy and mitochondrial homeostasisHitomi Yamamoto-Imoto, Satoshi Minami, Tatsuya Shioda, et al.
Pageof 3