Miho Kimura
National Institute of Advanced Industrial Science and Technology
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Publication
Featured researches published by Miho Kimura.
Molecular Endocrinology | 2008
Masashi Suzuki; Yuriko Uehara; Kaori Motomura-Matsuzaka; Junko Oki; Yoshinori Koyama; Miho Kimura; Masahiro Asada; Akiko Komi-Kuramochi; Syuichi Oka; Toru Imamura
Fibroblast growth factor (FGF) 21, a structural relative of FGF23 that regulates phosphate homeostasis, is a regulator of insulin-independent glucose transport in adipocytes and plays a role in the regulation of body weight. It also regulates ketogenesis and adaptive responses to starvation. We report that in a reconstituted receptor activation assay system using BaF3 cells, which do not endogenously express any type of FGF receptor (FGFR) or heparan sulfate proteoglycan, FGF21 alone does not activate FGFRs and that betaKlotho is required for FGF21 to activate two specific FGFR subtypes: FGFR1c and FGFR3c. Coexpression of betaKlotho and FGFR1c on BaF3 cells enabled FGF21, but not FGF23, to activate receptor signaling. Conversely, coexpression of FGFR1c and Klotho, a protein related to betaKlotho, enabled FGF23 but not FGF21 to activate receptor signaling, indicating that expression of betaKlotho/Klotho confers target cell specificity on FGF21/FGF23. In all of these cases, heparin enhanced the activation but was not essential. In 3T3-L1 adipocytes, up-regulation of glucose transporter (GLUT) expression by FGF21 was associated with expression of betaKlotho, which was absent in undifferentiated 3T3-L1 fibroblasts. It is thus suggested that betaKlotho expression is a crucial determinant of the FGF21 specificity of the target cells upon which it acts in an endocrine fashion.
Biochimica et Biophysica Acta | 2008
Kaori Motomura; Akiko Hagiwara; Akiko Komi-Kuramochi; Yoshiro Hanyu; Emi Honda; Masashi Suzuki; Miho Kimura; Junko Oki; Masahiro Asada; Nagako Sakaguchi; Fumiaki Nakayama; Makoto Akashi; Toru Imamura
Structural instability of wild-type fibroblast growth factor (FGF)-1 and its dependence on exogenous heparin for optimal activity diminishes its potential utility as a therapeutic agent. Here we evaluated FGFC, an FGF1:FGF2 chimeric protein, for its receptor affinity, absolute heparin-dependence, stability and potential clinical applicability. Using BaF3 transfectants overexpressing each FGF receptor (FGFR) subtype, we found that, like FGF1, FGFC activates all of the FGFR subtypes (i.e., FGFR1c, FGFR1b, FGFR2c, FGFR2b, FGFR3c, FGFR3b and FGFR4) in the presence of heparin. Moreover, FGFC activates FGFRs even in the absence of heparin. FGFC stimulated keratinocytes proliferation much more strongly than FGF2, as would be expected from its ability to activate FGFR2b. FGFC showed greater structural stability, biological activity and resistance to trypsinization, and less loss in solution than FGF1 or FGF2. When FGFC was intraperitoneally administered to BALB/c mice prior to whole body gamma-irradiation, survival of small intestine crypts was significantly enhanced, as compared to control mice. These results suggest that FGFC could be useful in a variety of clinical applications, including promotion of wound healing and protection against radiation-induced damage.
Experimental Dermatology | 2009
Fumiaki Nakayama; Akiko Hagiwara; Miho Kimura; Makoto Akashi; Toru Imamura
Abstract: Radiation‐induced hair loss is a clinically important, but under‐researched topic. The aim of the study was to develop an in vivo assay system for radiation‐induced apoptosis in hair follicles to promote hair research and exploit new radioprotectors. BALB/c mice received total body irradiation (TBI) with γ‐rays at doses in the range from 8 to 16 Gy at 6 days after depilation. Pathological changes were detected progressively in the hair follicles over the time course after TBI and the dystrophy was evaluated on the basis of stage‐specific parameters reported previously, which were found to be well‐suited for classification of the radiation‐induced hair follicle dystrophy. As a result, regression from anagen to catagen was determined in these follicles after irradiation. In addition, radiation‐induced apoptosis was a good early dystrophic parameter. In this system, it was found that fibroblast growth factor‐1 effectively prevented hair follicle apoptosis in mice.
Archive | 2008
Masashi Suzuki; Toru Imamura; Yuriko Uehara; Kaori Motomura; Junko Oki; Syuichi Oka; Masahiro Asada; Akiko Kuramochi; Miho Kimura
Archive | 2008
Toru Imamura; Miho Kimura; Mitsuko Kawano; Nozomi Tsujino; Akiko Kuramochi; Yuko Oda; Kaori Motomura; Masashi Suzuki; Masahiro Asada; Azusa Kameyama; Sumie Togayachi; Syuichi Oka
Archive | 2008
Toru Imamura; Miho Kimura; Mitsuko Kawano; Nozomi Tsujino; Akiko Kuramochi; Yuko Oda; Kaori Motomura; Masashi Suzuki; Masahiro Asada; Azusa Kameyama; Sumie Togayachi; Syuichi Oka
Archive | 2008
Shinko Asada; Toru Imamura; Miho Kimura; Akiko Kuramochi; Kaori Motomura; Shuichi Oka; Junko Oki; Osamu Suzuki; Yuriko Uehara; ゆり子 上原; 亨 今村; 明子 倉持; 修一 岡; 美穂 木村; 香織 本村; 眞弘 浅田; 理 鈴木; 潤子 隠岐
Archive | 2008
Toru Imamura; Miho Kimura; Mitsuko Kawano; Nozomi Tsujino; Akiko Kuramochi; Yuko Oda; Kaori Motomura; Masashi Suzuki; Masahiro Asada; Azusa Kameyama; Sumie Togayachi; Syuichi Oka
Archive | 2014
Masashi Suzuki; Toru Imamura; Yuriko Uehara; Kaori Motomura; Junko Oki; Syuichi Oka; Masahiro Asada; Akiko Kuramochi; Miho Kimura
Archive | 2008
Masashi Suzuki; Toru Imamura; Yuriko Uehara; Kaori Motomura; Junko Oki; Syuichi Oka; Masahiro Asada; Akiko Kuramochi; Miho Kimura
Collaboration
Dive into the Miho Kimura's collaboration.
National Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputsNational Institute of Advanced Industrial Science and Technology
View shared research outputs