Anoctamin 1 controls bone resorption by coupling Cl- channel activation with RANKL-RANK signaling transduction

Anoctamin 1 通过将 Cl- 通道激活与 RANKL-RANK 信号转导偶联来控制骨吸收。

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作者:Weijia Sun #,Shuai Guo #,Yuheng Li #,JianWei Li,Caizhi Liu,Yafei Chen,Xuzhao Wang,Yingjun Tan,Hua Tian,Cheng Wang,Ruikai Du,Guohui Zhong,Sai Shi,Biao Ma,Chang Qu,Jingxuan Fu,Xiaoyan Jin,Dingsheng Zhao,Yong Zhan,Shukuan Ling,Hailong An,Yingxian Li

Abstract

Osteoclast over-activation leads to bone loss and chloride homeostasis is fundamental importance for osteoclast function. The calcium-activated chloride channel Anoctamin 1 (also known as TMEM16A) is an important chloride channel involved in many physiological processes. However, its role in osteoclast remains unresolved. Here, we identified the existence of Anoctamin 1 in osteoclast and show that its expression positively correlates with osteoclast activity. Osteoclast-specific Anoctamin 1 knockout mice exhibit increased bone mass and decreased bone resorption. Mechanistically, Anoctamin 1 deletion increases intracellular Cl- concentration, decreases H+ secretion and reduces bone resorption. Notably, Anoctamin 1 physically interacts with RANK and this interaction is dependent upon Anoctamin 1 channel activity, jointly promoting RANKL-induced downstream signaling pathways. Anoctamin 1 protein levels are substantially increased in osteoporosis patients and this closely correlates with osteoclast activity. Finally, Anoctamin 1 deletion significantly alleviates ovariectomy induced osteoporosis. These results collectively establish Anoctamin 1 as an essential regulator in osteoclast function and suggest a potential therapeutic target for osteoporosis.

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