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酪氨酸磷酸酶SHP-1是破骨细胞生成和破骨细胞吸收活性的负调节因子:me(v)/me(v)突变小鼠中吸收增加和骨质减少。

The tyrosine phosphatase SHP-1 is a negative regulator of osteoclastogenesis and osteoclast resorbing activity: increased resorption and osteopenia in me(v)/me(v) mutant mice.

作者信息

Aoki K, Didomenico E, Sims N A, Mukhopadhyay K, Neff L, Houghton A, Amling M, Levy J B, Horne W C, Baron R

机构信息

Department of Orthopaedics, and Yale Cancer Center, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Bone. 1999 Sep;25(3):261-7. doi: 10.1016/s8756-3282(99)00174-x.

Abstract

Naturally occuring inactivating mutations of the Src homology 2 (SH2) domain-containing tyrosine phosphatase 1 (SHP-1) in mice give rise to the motheaten (me) phenotype. me/me mice have multiple hematopoietic abnormalities, suggesting that this phosphatase plays an important role in hematopoiesis. SHP-1 binds to and is activated by several hematopoietic surface receptors, including the colony-stimulating factor type 1 receptor. We have examined the role of SHP-1 in osteoclastogenesis and osteoclast function using mice with the viable motheaten (me(v)/me(v)) mutation, which has markedly decreased SHP-1 activity. Histomorphometric analysis of 6-week-old me(v)/me(v) mice and control littermates showed a marked osteopenia with an increase in bone resorption indices. The number of formed osteoclast-like cells (OCLs) in cocultures of me(v)/me(v) hematopoietic cells with normal osteoblasts was significantly increased. In contrast, the number of OCLs formed in the coculture of normal bone marrow cells with the me(v)/me(v) osteoblasts was not significantly different from controls. The bone-resorbing activity of me(v)me(v) OCLs and authentic osteoclasts was also found to be increased. Finally, Western blotting of proteins from me(v)/me(v) and control OCLs revealed an overall increase in tyrosine phosphorylation in the me(v)/me(v) lysates. These in vivo and in vitro results suggest that SHP-1 is a negative regulator of bone resorption, affecting both the formation and the function of osteoclasts.

摘要

小鼠中含Src同源2(SH2)结构域的酪氨酸磷酸酶1(SHP-1)的天然失活突变会导致食母生(me)表型。me/me小鼠存在多种造血异常,表明这种磷酸酶在造血过程中起重要作用。SHP-1与几种造血表面受体结合并被其激活,包括1型集落刺激因子受体。我们使用具有可行食母生(me(v)/me(v))突变的小鼠(其SHP-1活性明显降低),研究了SHP-1在破骨细胞生成和破骨细胞功能中的作用。对6周龄的me(v)/me(v)小鼠和对照同窝小鼠进行组织形态计量学分析,结果显示骨量明显减少,骨吸收指数增加。me(v)/me(v)造血细胞与正常成骨细胞共培养时形成的破骨细胞样细胞(OCLs)数量显著增加。相比之下,正常骨髓细胞与me(v)/me(v)成骨细胞共培养时形成的OCLs数量与对照组无显著差异。还发现me(v)me(v) OCLs和真性破骨细胞的骨吸收活性增加。最后,对来自me(v)/me(v)和对照OCLs的蛋白质进行蛋白质印迹分析,结果显示me(v)/me(v)裂解物中酪氨酸磷酸化总体增加。这些体内和体外结果表明,SHP-1是骨吸收的负调节因子,影响破骨细胞的形成和功能。

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