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Hck 通过控制破骨细胞前体的募集来促进骨稳态。

Hck contributes to bone homeostasis by controlling the recruitment of osteoclast precursors.

机构信息

Centre National de la Recherche Scientifique (CNRS), Unité Mixte de Recherche (UMR) 5089, Institut de Pharmacologie et de Biologie Structurale (IPBS), Toulouse, France.

出版信息

FASEB J. 2013 Sep;27(9):3608-18. doi: 10.1096/fj.13-232736. Epub 2013 Jun 6.

DOI:10.1096/fj.13-232736
PMID:23742809
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4046168/
Abstract

In osteoclasts, Src controls podosome organization and bone degradation, which leads to an osteopetrotic phenotype in src(-/-) mice. Since this phenotype was even more severe in src(-/-)hck(-/-) mice, we examined the individual contribution of Hck in bone homeostasis. Compared to wt mice, hck(-/-) mice exhibited an osteopetrotic phenotype characterized by an increased density of trabecular bone and decreased bone degradation, although osteoclastogenesis was not impaired. Podosome organization and matrix degradation were found to be defective in hck(-/-) osteoclast precursors (preosteoclast) but were normal in mature hck(-/-) osteoclasts, probably through compensation by Src, which was specifically overexpressed in mature osteoclasts. As a consequence of podosome defects, the 3-dimensional migration of hck(-/-) preosteoclasts was strongly affected in vitro. In vivo, this translated by altered bone homing of preosteoclasts in hck(-/-) mice: in metatarsals of 1-wk-old mice, when bone formation strongly depends on the recruitment of these cells, reduced numbers of osteoclasts and abnormal developing trabecular bone were observed. This phenotype was still detectable in adults. In summmary, Hck is one of the very few effectors of preosteoclast recruitment described to date and thereby plays a critical role in bone remodeling.

摘要

在破骨细胞中,Src 控制着破骨细胞的足突组织和骨骼降解,导致 src(-/-) 小鼠出现骨质硬化表型。由于 src(-/-)hck(-/-) 小鼠的这种表型甚至更为严重,我们研究了 Hck 在骨骼稳态中的个体贡献。与 wt 小鼠相比,hck(-/-) 小鼠表现出骨质硬化表型,其特征是骨小梁密度增加和骨降解减少,尽管破骨细胞生成没有受损。破骨细胞前体(preosteoclast)中的足突组织和基质降解被发现存在缺陷,但成熟的 hck(-/-) 破骨细胞中正常,这可能是通过特异性在成熟破骨细胞中过表达的 Src 进行补偿。由于足突缺陷,hck(-/-) preosteoclasts 的 3 维迁移在体外受到强烈影响。在体内,这导致 preosteoclasts 在 hck(-/-) 小鼠中的骨归巢发生改变:在 1 周龄小鼠的跖骨中,当骨骼形成强烈依赖于这些细胞的募集时,观察到破骨细胞数量减少和异常发育的骨小梁。这种表型在成年期仍然可检测到。总之,Hck 是迄今为止描述的招募 preosteoclast 的少数几个效应器之一,因此在骨骼重塑中起着关键作用。

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