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The Src family kinase, Lyn, suppresses osteoclastogenesis in vitro and in vivo

机译:Src家族激酶Lyn在体外和体内抑制破骨细胞生成

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摘要

c-Src kinase is a rate-limiting activator of osteoclast (OC) function and Src inhibitors are therefore candidate antiosteoporosis drugs. By affecting αvβ3 and macrophage-colony stimulating factor (M-CSF)-induced signaling, c-Src is central to osteoclast activity, but not differentiation. We find Lyn, another member of Src family kinases (SFK) is, in contrast, a negative regulator of osteoclastic bone resorption. The absence of Lyn enhances receptor activator of NF-κB ligand (RANKL)-mediated differentiation of osteoclast precursors without affecting proliferation and survival, while its overexpression decreases osteoclast formation. In further contrast to c-Src, Lyn deficiency does not impact the activity of the mature cell. Reflecting increased osteoclast development in vitro, Lyn−/− mice undergo accelerated osteoclastogenesis and bone loss, in vivo, in response to RANKL. Mechanistically, Lyn forms a complex with receptor activator of NF-κB (RANK), the tyrosine phosphatase, SHP-1, and the adapter protein, Grb2-associated binder 2 (Gab2). Upon RANKL exposure, Gab2 phosphorylation, JNK, and NF-κB activation are enhanced in Lyn−/− osteoclasts, all critical events in osteoclast development. We therefore establish that Lyn regulates osteoclast formation and does it in a manner antithetical to that of c-Src. The most pragmatic aspect of our findings is that successful therapeutic inhibition of c-Src, in the context of the osteoclast, will require its stringent targeting.
机译:c-Src激酶是破骨细胞(OC)功能的限速活化剂,因此Src抑制剂是抗骨质疏松症的候选药物。通过影响αvβ3和巨噬细胞集落刺激因子(M-CSF)诱导的信号传导,c-Src对破骨细胞活性至关重要,但对分化没有影响。相反,我们发现Lyn是Src家族激酶(SFK)的另一个成员,是破骨细胞骨吸收的负调节剂。 Lyn的缺失增强了破骨细胞前体的NF-κB配体(RANKL)介导的分化的受体激活剂,而不会影响增殖和存活,而其过表达则减少了破骨细胞的形成。与c-Src进一步相反,Lyn缺乏不会影响成熟细胞的活性。反映了体外破骨细胞发育的增加,Lyn-/-小鼠在体内响应RANKL经历了加速的破骨细胞生成和骨丢失。机械上,Lyn与NF-κB受体激活剂(RANK),酪氨酸磷酸酶SHP-1和衔接蛋白Grb2相关的结合物2(Gab2)形成复合物。在RANKL暴露后,Lyn-/-破骨细胞中的Gab2磷酸化,JNK和NF-κB活化得到增强,破骨细胞发育中的所有关键事件均如此。因此,我们确定Lyn调节破骨细胞形成并以与c-Src相反的方式进行。我们发现的最实用的方面是,在破骨细胞的背景下,对c-Src的成功治疗性抑制将需要其严格的靶向。

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