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The Journal of Biological Chemistry|July 1, 2004
Impaired IgG production in mice deficient for heat shock transcription factor 1Sachiye Inouye, Hanae Izu, Eiichi Takaki, et al.The EMBO Journal|September 14, 2010
Heat shock factor 1 ameliorates proteotoxicity in cooperation with the transcription factor NFATNaoki Hayashida, Mitsuaki Fujimoto, Ke Tan, et al.FEBS Letters|September 24, 2013
Chicken IL-6 is a heat-shock geneRamachandran Prakasam, Mitsuaki Fujimoto, Ryosuke Takii, et al.Nature Communications|July 29, 2022
HSF1 phosphorylation establishes an active chromatin state via the TRRAP-TIP60 complex and promotes tumorigenesisMitsuaki Fujimoto, Ryosuke Takii, Masaki Matsumoto, et al.The Journal of Biological Chemistry|June 9, 2007
Genetic evidence for a protective role for heat shock factor 1 and heat shock protein 70 against colitisKen-Ichiro Tanaka, Takushi Namba, Yasuhiro Arai, et al.Molecular Cell|September 4, 2012
RPA assists HSF1 access to nucleosomal DNA by recruiting histone chaperone FACTMitsuaki Fujimoto, Eiichi Takaki, Ryosuke Takii, et al.Molecular Biology of the Cell|October 30, 2009
A novel mouse HSF3 has the potential to activate nonclassical heat-shock genes during heat shockMitsuaki Fujimoto, Naoki Hayashida, Takuma Katoh, et al.Molecular and Cellular Biology|August 5, 2003
Activation of heat shock genes is not necessary for protection by heat shock transcription factor 1 against cell death due to a single exposure to high temperaturesSachiye Inouye, Kensaku Katsuki, Hanae Izu, et al.The EMBO Journal|October 16, 2004
HSF4 is required for normal cell growth and differentiation during mouse lens developmentMitsuaki Fujimoto, Hanae Izu, Keisuke Seki, et al.Immunobiology|February 3, 2007
Association of heat shock protein 70 induction and the amelioration of experimental autoimmune uveoretinitis in miceHirokuni Kitamei, Nobuyoshi Kitaichi, Kazuhiko Yoshida, et al.Pageof 6