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破骨细胞中PYK2与p130(Cas)的稳定结合及其在封闭区的共定位。

Stable association of PYK2 and p130(Cas) in osteoclasts and their co-localization in the sealing zone.

作者信息

Lakkakorpi P T, Nakamura I, Nagy R M, Parsons J T, Rodan G A, Duong L T

机构信息

Department of Bone Biology and Osteoporosis Research, Merck Research Laboratories, West Point, Pennsylvania 19486, USA.

出版信息

J Biol Chem. 1999 Feb 19;274(8):4900-7. doi: 10.1074/jbc.274.8.4900.

Abstract

Bone resorption is initiated by osteoclast attachment to the mineralized matrix, cytoskeletal reorganization, cellular polarization, and the formation of the sealing zone. The present study examines the interaction between PYK2 and p130(Cas) (Crk-associated substrate), suggested to be part of the signaling pathway initiated by osteoclast adhesion. Using murine osteoclast-like cells (OCLs) and their mononuclear precursors (pOCs), generated in a co-culture of bone marrow and osteoblastic MB1.8 cells, we show that: 1) p130(Cas) is tyrosine-phosphorylated upon adhesion of pOCs to vitronectin or ligation of beta3 integrins; 2) p130(Cas) colocalizes with PYK2 and the cytoskeletal proteins F-actin, vinculin, and paxillin in the podosomal-rich ring-like structures of OCLs plated on glass and in the sealing zone in actively resorbing OCLs on bone; 3) p130(Cas) and PYK2 form a stable complex in pOCs, independent of tyrosine phosphorylation of either molecule, and this complex is present in Src (-/-) OCLs, in which neither protein is phosphorylated or associated with the osteoclast adhesion structure; 4) the association of p130(Cas) and PYK2 is mediated by the SH3 domain of p130(Cas) and the C-terminal domain of PYK2. These findings suggest that p130(Cas) and its association with PYK2 may play an important role in the adhesion-dependent signaling that leads to cytoskeletal reorganization and formation of the sealing zone during osteoclast activation.

摘要

骨吸收由破骨细胞附着于矿化基质、细胞骨架重组、细胞极化以及封闭带的形成所启动。本研究检测了PYK2与p130(Cas)(Crk相关底物)之间的相互作用,提示其为破骨细胞黏附所启动信号通路的一部分。利用在骨髓与成骨细胞MB1.8细胞共培养体系中产生的小鼠破骨细胞样细胞(OCLs)及其单核前体细胞(pOCs),我们发现:1)pOCs黏附于玻连蛋白或β3整合素连接时,p130(Cas)发生酪氨酸磷酸化;2)在铺于玻璃上的OCLs富含足体的环状结构以及在骨上活跃吸收的OCLs的封闭带中,p130(Cas)与PYK2以及细胞骨架蛋白F-肌动蛋白、纽蛋白和桩蛋白共定位;3)p130(Cas)与PYK2在pOCs中形成稳定复合物,与任一分子的酪氨酸磷酸化无关,且该复合物存在于Src (-/-) OCLs中,其中两种蛋白均未磷酸化或与破骨细胞黏附结构相关;4)p130(Cas)与PYK2的结合由p130(Cas)的SH3结构域和PYK2的C末端结构域介导。这些发现提示,p130(Cas)及其与PYK2的结合可能在破骨细胞活化过程中导致细胞骨架重组和封闭带形成的黏附依赖性信号传导中发挥重要作用。

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