RRC ID 42720
著者 Ikeda F, Nishimura R, Matsubara T, Hata K, Reddy SV, Yoneda T.
タイトル Activation of NFAT signal in vivo leads to osteopenia associated with increased osteoclastogenesis and bone-resorbing activity.
ジャーナル J Immunol
Abstract The transcription factor family member NFAT plays an important role in the regulation of osteoclast differentiation. However, the role of NFAT in osteoclasts in vivo is still not fully understood. Thus, we generated transgenic mice in which constitutively active-NFAT1/NFATc2 (CA-NFAT1) is specifically expressed in the osteoclast lineage, using the tartrate-resistant acid phosphatase gene promoter. Both x-ray and histological analyses demonstrated an osteopenic bone phenotype in the CA-NFAT1 transgenic mice, whereas the number of tartrate-resistant acid phosphatase-positive osteoclasts was markedly higher in the long bones of these mice. Furthermore, the bone-resorbing activity of mature osteoclasts derived from the transgenic mice was much higher than that of wild-type mice. Interestingly, the introduction of CA-NFAT1 into osteoclasts or RAW264 cells increased the expression and activity of c-Src and stimulated actin ring formation. In contrast, CA-NFAT1 or GFP-tagged VIVIT peptide, a specific inhibitor of NFAT, did not affect the survival of mature osteoclasts. Collectively, our data indicate that NFAT controls bone resorption in vivo by stimulating the differentiation and functioning of osteoclasts but not their survival.
巻・号 177(4)
ページ 2384-90
公開日 2006-8-15
DOI 10.4049/jimmunol.177.4.2384
PII 177/4/2384
PMID 16888000
MeSH Animals Bone Diseases, Metabolic / genetics Bone Diseases, Metabolic / metabolism* Bone Diseases, Metabolic / pathology Bone Resorption / genetics Bone Resorption / metabolism* Bone Resorption / pathology Cell Differentiation / genetics Cell Line Cell Proliferation* Cell Survival / genetics Mice Mice, Inbred C57BL Mice, Inbred DBA Mice, Transgenic Monocytes / metabolism NFATC Transcription Factors / genetics NFATC Transcription Factors / metabolism NFATC Transcription Factors / physiology* Osteoclasts / metabolism* Osteoclasts / pathology Signal Transduction* / genetics
IF 4.886
引用数 49
WOS 分野 IMMUNOLOGY
リソース情報
ヒト・動物細胞 RAW 264(RCB0535)