Michiko Yoshida
Tohoku University
10 Papers
15 Citations
Michiko Yoshida is an academic researcher from Tohoku University. The author has contributed to research in topics: Transcription factor & Endochondral ossification. The author has an hindex of 4, co-authored 10 publications. Previous affiliations of Michiko Yoshida include Osaka University.
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Papers
Arid5b facilitates chondrogenesis by recruiting the histone demethylase Phf2 to Sox9-regulated genes
Kenji Hata,Rikako Takashima,Katsuhiko Amano,K. Ono,Masako Nakanishi,Michiko Yoshida,Makoto Wakabayashi,Akio Matsuda,Yoshinobu Maeda,Yutaka Suzuki,Sumio Sugano,Robert H. Whitson,Riko Nishimura,Toshiyuki Yoneda +13 more
TL;DR: An epigenomic mechanism of skeletal development is established, whereby Arid5b promotes chondrogenesis by facilitating Phf2-mediated histone demethylation of Sox9-regulated chondrocyte gene promoters.
Regulation of endochondral ossification by transcription factors
TL;DR: A transcription factor, BBF2H7, functions as an ER stress sensor in chondrocytes through regulation of appropriate secretion of chondrogenic matrices and this work would like to discuss how the transcription factors regulate endochondral ossification.
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Dmrt2 promotes transition of endochondral bone formation by linking Sox9 and Runx2.
K. Ono,Kenji Hata,Eriko Nakamura,Shota Ishihara,Sachi Kobayashi,Masako Nakanishi,Masako Nakanishi,Michiko Yoshida,Yoshifumi Takahata,Tomohiko Murakami,Seiichi Takenoshita,Toshihisa Komori,Riko Nishimura,Toshiyuki Yoneda +13 more
- 11 Mar 2021
TL;DR: In this paper, the authors identified the transcription factor Dmrt2 (double-sex and mab-3 related transcription factor 2) as a Sox9-inducible gene that promotes chondrocyte hypertrophy in pre-hypertrophic chondROcytes.
Connective tissue growth factor promotes chemotaxis of preosteoblasts through integrin α5 and Ras during tensile force-induced intramembranous osteogenesis.
Wei Jiang,Nobuo Takeshita,Toshihiro Maeda,Chisumi Sogi,Toshihito Oyanagi,Seiji Kimura,Michiko Yoshida,Kiyo Sasaki,Arata Ito,Teruko Takano-Yamamoto,Teruko Takano-Yamamoto +10 more
TL;DR: In this article, the authors evaluated the chemotactic properties of Connective Tissue Growth Factor (CTGF) and its underlying mechanisms during active bone formation through intramembranous osteogenesis.
Methionine Enkephalin Suppresses Osteocyte Apoptosis Induced by Compressive Force through Regulation of Nuclear Translocation of NFATc1.
Chisumi Sogi,Nobuo Takeshita,Wei Jiang,Siyoung Kim,Toshihiro Maeda,Michiko Yoshida,Toshihito Oyanagi,Arata Ito,Seiji Kimura,Daisuke Seki,Ikuko Takano,Yuichi Sakai,Ikuma Fujiwara,Shigeo Kure,Teruko Takano-Yamamoto,Teruko Takano-Yamamoto +15 more
- 01 Jul 2020
TL;DR: This study shows that osteocytes expressed MENK, whereas the MENK expression was suppressed by compressive force via CTGF signaling, and MENK downregulated nuclear translocation of NFATc1 probably by suppressing Ca2+ signaling in osteocytes and consequently inhibitingCompressive force‐induced osteocyte apoptosis, followed by bone resorption.
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