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Mechanical regulation of bone homeostasis through p130Cas-mediated alleviation of NF-κB activity
Author(s) -
Tsuyoshi Miyazaki,
Zhihai Zhao,
Yoshinori Ichihara,
Daisuke Yoshino,
Takeshi Imamura,
Keisuke Sawada,
Satoru Hayano,
Hiroshi Kamioka,
Shuuichi Mori,
Hiroaki Hirata,
Keigo Araki,
Keiko Kawauchi,
Kazuhiro Shigemoto,
Sakae Tanaka,
Lynda F. Bonewald,
H. Honda,
Masahiro Shinohara,
M. Nagao,
Toru Ogata,
Ichiro Harada,
Yasuhiro Sawada
Publication year - 2019
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aau7802
Subject(s) - homeostasis , bone resorption , nf κb , microbiology and biotechnology , mechanotransduction , chemistry , rankl , bone cell , bone remodeling , nucleus , endocrinology , signal transduction , biology , receptor , activator (genetics) , biochemistry
Mechanical loading plays an important role in bone homeostasis. However, molecular mechanisms behind the mechanical regulation of bone homeostasis are poorly understood. We previously reported p130Cas (Cas) as a key molecule in cellular mechanosensing at focal adhesions. Here, we demonstrate that Cas is distributed in the nucleus and supports mechanical loading-mediated bone homeostasis by alleviating NF-κB activity, which would otherwise prompt inflammatory processes. Mechanical unloading modulates Cas distribution and NF-κB activity in osteocytes, the mechanosensory cells in bones. Cas deficiency in osteocytes increases osteoclastic bone resorption associated with NF-κB-mediated RANKL expression, leading to osteopenia. Upon shear stress application on cultured osteocytes, Cas translocates into the nucleus and down-regulates NF-κB activity. Collectively, fluid shear stress-dependent Cas-mediated alleviation of NF-κB activity supports bone homeostasis. Given the ubiquitous expression of Cas and NF-κB together with systemic distribution of interstitial fluid, the Cas-NF-κB interplay may also underpin regulatory mechanisms in other tissues and organs.

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