Mechanical regulation of bone homeostasis through p130Cas-mediated alleviation of NF-κB activity

通过 p130Cas 介导的 NF-κB 活性缓解来机械调节骨稳态

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作者:T Miyazaki, Z Zhao, Y Ichihara, D Yoshino, T Imamura, K Sawada, S Hayano, H Kamioka, S Mori, H Hirata, K Araki, K Kawauchi, K Shigemoto, S Tanaka, L F Bonewald, H Honda, M Shinohara, M Nagao, T Ogata, I Harada, Y Sawada

Abstract

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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