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Critical roles of c-Jun signaling in regulation of NFAT family and RANKL-regulated osteoclast differentiation
Fumiyo Ikeda, … , Anjana Rao, Toshiyuki Yoneda
Fumiyo Ikeda, … , Anjana Rao, Toshiyuki Yoneda
Published August 16, 2004
Citation Information: J Clin Invest. 2004;114(4):475-484. https://doi.org/10.1172/JCI19657.
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Article Bone biology

Critical roles of c-Jun signaling in regulation of NFAT family and RANKL-regulated osteoclast differentiation

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Abstract

Receptor activator of NF-κB ligand (RANKL) plays an essential role in osteoclast formation and bone resorption. Although genetic and biochemical studies indicate that RANKL regulates osteoclast differentiation by activating receptor activator of NF-κB and associated signaling molecules, the molecular mechanisms of RANKL-regulated osteoclast differentiation have not yet been fully established. We investigated the role of the transcription factor c-Jun, which is activated by RANKL, in osteoclastogenesis using transgenic mice expressing dominant-negative c-Jun specifically in the osteoclast lineage. We found that the transgenic mice manifested severe osteopetrosis due to impaired osteoclastogenesis. Blockade of c-Jun signaling also markedly inhibited soluble RANKL-induced osteoclast differentiation in vitro. Overexpression of nuclear factor of activated T cells 1 (NFAT1) (NFATc2/NFATp) or NFAT2 (NFATc1/NFATc) promoted differentiation of osteoclast precursor cells into tartrate-resistant acid phosphatase–positive (TRAP–positive) multinucleated osteoclast-like cells even in the absence of RANKL. Overexpression of NFAT1 also markedly transactivated the TRAP gene promoter. These osteoclastogenic activities of NFAT were abrogated by overexpression of dominant-negative c-Jun. Importantly, osteoclast differentiation and induction of NFAT2 expression by NFAT1 overexpression or soluble RANKL treatment were profoundly diminished in spleen cells of the transgenic mice. Collectively, these results indicate that c-Jun signaling in cooperation with NFAT is crucial for RANKL-regulated osteoclast differentiation.

Authors

Fumiyo Ikeda, Riko Nishimura, Takuma Matsubara, Sakae Tanaka, Jun-ichiro Inoue, Sakamuri V. Reddy, Kenji Hata, Kenji Yamashita, Toru Hiraga, Toshiyuki Watanabe, Toshio Kukita, Katsuji Yoshioka, Anjana Rao, Toshiyuki Yoneda

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Figure 6

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Partnership between c-Jun/c-Fos complexes and NFAT in osteoclast differe...
Partnership between c-Jun/c-Fos complexes and NFAT in osteoclast differentiation. (A) Enhancement of NFAT1- or NFAT2-induced osteoclastogenesis by overexpression of c-Jun and c-Fos. RAW264 cells were infected with adenoviruses as indicated and incubated for 6 days. TRAP+ multinucleated osteoclast-like cells were counted. (B and C) Suppression of NFAT1- or NFAT2-induced osteoclastogenesis by DN–c-Jun or DN–c-Fos. RAW264 cells were infected with NFAT1 or NFAT2 adenovirus (50 MOI) together with control, DN–c-Jun, or DN–c-Fos adenovirus (50 MOI), and TRAP+ multinucleated osteoclast-like cells were counted. (D) Cooperative role of AP-1 and NFAT1 in transactivation of TRAP gene promoter. RAW264 cells were transfected with TRAP gene promoter fused to luciferase reporter construct together with NFAT1, MKK7-JNK1, or both. Luciferase activity in cell lysates was measured 48 hours after transfection. (E) Suppression of NFAT1-induced TRAP gene promoter activation by DN–c-Jun or DN–c-Fos. RAW264 cells were transfected with the TRAP gene promoter fused to a luciferase reporter construct together with DN–c-Jun or DN–c-Fos. Luciferase activity in cell lysates was measured 48 hours after transfection.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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