Inhibitory regulation of osteoclast bone resorption by signal regulatory protein α

破骨细胞 骨吸收 细胞生物学 吸收 化学 骨重建 生物 受体 内分泌学 生物化学
作者
Ellen M. van Beek,Teun J. de Vries,Lars Mulder,Ton Schoenmaker,Kees A. Hoeben,Takashi Matozaki,G.E.J. Langenbach,Georg Kraal,Vincent Everts,Timo K. van den Berg
出处
期刊:The FASEB Journal [Wiley]
卷期号:23 (12): 4081-4090 被引量:41
标识
DOI:10.1096/fj.09-131557
摘要

Osteoclasts mediate bone resorption, which is critical for bone development, maintenance, and repair. Proper control of osteoclast development and function is important and deregulation of these processes may lead to bone disease, such as osteoporosis. Previous studies have shown that the cytosolic protein tyrosine phosphatase SHP-1 acts as a suppressor of osteoclast differentiation and function, but putative inhibitory receptors that mediate recruitment and activation of SHP-1 in osteoclasts have remained unknown. In the present study, we identify the SHP-1-recruiting inhibitory immunoreceptor signal regulatory protein (SIRP) alpha as a negative regulator of osteoclast activity. SIRPalpha is expressed by osteoclasts, and osteoclasts from mice lacking the SIRPalpha cytoplasmic tail and signaling capacity display enhanced bone resorption in vitro. Consequently, SIRPalpha-mutant mice have a significantly reduced cortical bone mass. Furthermore, osteoclasts from SIRPalpha-mutant mice show an enhanced formation of actin rings, known to be instrumental in bone resorption. SIRPalpha mutation did not significantly affect osteoclast formation, implying that the role of SIRPalpha was limited to the regulation of mature osteoclast function. This identifies SIRPalpha as a bona fide inhibitory receptor that regulates the bone-resorption activity and supports a concept in which osteoclast function is balanced by the signaling activities of activating and inhibitory immunoreceptors.
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