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在单发性和多发性骨纤维异常增殖症中,表达激活型Gsα突变的成骨细胞增殖增加。

Increased proliferation of osteoblastic cells expressing the activating Gs alpha mutation in monostotic and polyostotic fibrous dysplasia.

作者信息

Marie P J, de Pollak C, Chanson P, Lomri A

机构信息

INSERM U349, Paris, France.

出版信息

Am J Pathol. 1997 Mar;150(3):1059-69.

Abstract

We studied the osteoblastic abnormalities resulting from activating mutation of the Gs alpha gene in two patients with McCune-Albright syndrome and one patient with monostotic fibrous dysplasia. Histomorphometric analysis of dysplastic lesions showed a low number of differentiated osteoblasts along the bone surface and numerous immature alkaline phosphatase-positive mesenchymal cells actively depositing a woven bone matrix. Osteoblastic cells isolated from dysplastic bone lesions expressed a missense mutation in the Gs alpha gene in position 201 and showed increased intracellular basal cyclic adenosine 3',5'-monophosphate levels compared with normal cells isolated from a noninvolved area in the same patient. Cell proliferation evaluated by DNA synthesis was two-fold to threefold greater in osteoblastic cells expressing the mutation compared with normal cells from the same patient and was greater in cells isolated from more severe than less severe fibrotic lesions. In contrast, the synthesis of osteocalcin, a marker of mature osteoblasts, was lower in osteoblastic cells expressing the Gs alpha mutation compared with normal cells from the same patient and was lower in cells isolated from severe compared with less severe fibrotic lesions, indicating that the increased growth in mutated osteoblastic cells was associated with reduced cell differentiation. The results show that activating mutation of Gs alpha in osteoblastic cells leads to constitutive activation of adenylate cyclase, increased cell proliferation, and inappropriate cell differentiation, resulting in overproduction of a disorganized fibrotic bone matrix in polyostotic and monostotic fibrous dysplasia.

摘要

我们研究了两名McCune-Albright综合征患者和一名单发性骨纤维发育不良患者中因Gsα基因激活突变导致的成骨细胞异常。对发育异常病变的组织形态计量学分析显示,沿骨表面分化的成骨细胞数量较少,而大量未成熟的碱性磷酸酶阳性间充质细胞积极沉积编织骨基质。从发育异常骨病变中分离出的成骨细胞在第201位的Gsα基因中表达错义突变,与从同一患者未受累区域分离出的正常细胞相比,其细胞内基础环磷酸腺苷水平升高。通过DNA合成评估的细胞增殖在表达突变的成骨细胞中比同一患者的正常细胞高两到三倍,并且在从较严重纤维化病变分离出的细胞中比从较轻纤维化病变分离出的细胞中更高。相反,与同一患者的正常细胞相比,表达Gsα突变的成骨细胞中骨钙素(成熟成骨细胞的标志物)的合成较低,并且在从严重纤维化病变分离出的细胞中比从较轻纤维化病变分离出的细胞中更低,这表明突变的成骨细胞中增加的生长与细胞分化减少有关。结果表明,成骨细胞中Gsα的激活突变导致腺苷酸环化酶的组成性激活、细胞增殖增加和不适当的细胞分化,从而在多骨型和单骨型骨纤维发育不良中导致无序纤维化骨基质的过度产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fa9/1857873/573370812315/amjpathol00027-0276-a.jpg

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