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钙粘蛋白调节破骨细胞功能。

Vinculin regulates osteoclast function.

机构信息

From the Departments of Pathology and Immunology and.

出版信息

J Biol Chem. 2014 May 9;289(19):13554-64. doi: 10.1074/jbc.M114.550731. Epub 2014 Mar 27.

Abstract

Osteoclastic bone resorption depends upon the cell's ability to organize its cytoskeleton. Because vinculin (VCL) is an actin-binding protein, we asked whether it participates in skeletal degradation. Thus, we mated VCL(fl/fl) mice with those expressing cathepsin K-Cre (CtsK-VCL) to delete the gene in mature osteoclasts or lysozyme M-Cre (LysM-VCL) to target all osteoclast lineage cells. VCL-deficient osteoclasts differentiate normally but, reflecting cytoskeletal disorganization, form small actin rings and fail to effectively resorb bone. In keeping with inhibited resorptive function, CtsK-VCL and LysM-VCL mice exhibit a doubling of bone mass. Despite cytoskeletal disorganization, the capacity of VCL(-/-) osteoclastic cells to normally phosphorylate c-Src in response to αvβ3 integrin ligand is intact. Thus, integrin-activated signals are unrelated to the means by which VCL organizes the osteoclast cytoskeleton. WT VCL completely rescues actin ring formation and bone resorption, as does VCL(P878A), which is incapable of interacting with Arp2/3. As expected, deletion of the VCL tail domain (VCL(1-880)), which binds actin, does not normalize VCL(-/-) osteoclasts. The same is true regarding VCL(I997A), which also prevents VCL/actin binding, and VCL(A50I) and VCL(811-1066), both of which arrest talin association. Thus, VCL binding talin, but not Arp2/3, is critical for osteoclast function, and its selective inhibition retards physiological bone loss.

摘要

破骨细胞的骨吸收依赖于细胞组织细胞骨架的能力。由于 vinculin(VCL)是一种肌动蛋白结合蛋白,我们想知道它是否参与了骨骼降解。因此,我们将 VCL(fl/fl)小鼠与表达组织蛋白酶 K-Cre(CtsK-VCL)的小鼠交配,以在成熟破骨细胞中删除该基因,或与表达溶酶体相关膜蛋白-M 型 Cre(LysM-VCL)的小鼠交配,以靶向所有破骨细胞谱系细胞。VCL 缺陷型破骨细胞正常分化,但由于细胞骨架紊乱,形成小的肌动蛋白环,无法有效吸收骨。与抑制吸收功能一致,CtsK-VCL 和 LysM-VCL 小鼠的骨量增加了一倍。尽管细胞骨架紊乱,但 VCL(-/-)破骨细胞细胞对αvβ3 整合素配体正常磷酸化 c-Src 的能力仍然完整。因此,整合素激活的信号与 VCL 组织破骨细胞细胞骨架的方式无关。WT VCL 完全挽救了肌动蛋白环的形成和骨吸收,VCL(P878A)也是如此,它不能与 Arp2/3 相互作用。正如预期的那样,删除 VCL 尾部结构域(VCL(1-880)),该结构域与肌动蛋白结合,不能使 VCL(-/-)破骨细胞正常化。对于 VCL(I997A)也是如此,它也阻止了 VCL/肌动蛋白结合,以及 VCL(A50I)和 VCL(811-1066),它们都阻止了 talin 结合。因此,VCL 与 talin 结合,而不是与 Arp2/3 结合,对于破骨细胞功能至关重要,其选择性抑制可减缓生理骨质流失。

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