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Neurofibromin plays a critical role in modulating osteoblast differentiation of mesenchymal stem/progenitor cells.

机译:神经纤维蛋白在调节间充质干/祖细胞的成骨细胞分化中起关键作用。

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摘要

Mutations in the NF1 tumor suppressor gene cause neurofibromatosis type 1, a pandemic autosomal dominant genetic disorder with an incidence of 1:3000. Individuals with NF1 have a variety of malignant and non-malignant manifestations, including skeletal manifestations, such as osteoporosis, scoliosis and short statures. However, the mechanism(s) underlying the osseous manifestations in NF1 are poorly understood. In the present study, utilizing Nf1 haploinsufficient (+/-) mice, we demonstrate that Nf1+/- mesenchymal stem/progenitor cells (MSPC) have increased proliferation and colony forming unit-fibroblast (CFU-F) capacity compared with wild-type (WT) MSPC. Nf1+/- MSPC also have fewer senescent cells and have a significantly higher telomerase activity compared with WT MSPC. Nf1+/- MSPC have impaired osteoblast differentiation as determined by alkaline phosphatase staining, and confirmed by single CFU-F replating assays. The impaired osteoblast differentiation in Nf1+/- MSPC is consistent with the reduced expression of osteoblast markers at the mRNA level, including osteocalcin and osteonectin. Importantly, re-expression of the full-length NF1 GTPase activating related domain (NF1 GAP-related domain) is sufficient to restore the impaired osteoblast differentiation in Nf1+/- MSPC. Taken together, our results suggest that neurofibromin plays a crucial role in modulating MSPC differentiation into osteoblasts, and the defect in osteoblast differentiation may contribute at least in part to the osseous abnormalities seen in individuals with NF1.
机译:NF1肿瘤抑制基因的突变会导致1型神经纤维瘤病,这是一种大流行性常染色体显性遗传疾病,发病率为1:3000。患有NF1的个体有各种恶性和非恶性表现,包括骨骼表现,例如骨质疏松症,脊柱侧弯和矮小身材。但是,对NF1骨性表现的潜在机制了解甚少。在本研究中,利用Nf1单倍体不足(+/-)小鼠,我们证明Nf1 +/-间充质干/祖细胞(MSPC)与野生型相比具有增加的增殖和集落形成单位成纤维细胞(CFU-F)的能力。 WT)MSPC。与WT MSPC相比,Nf1 +/- MSPC的衰老细胞更少,端粒酶活性更高。 Nf1 +/- MSPC通过碱性磷酸酶染色确定受损的成骨细胞分化,并通过单次CFU-F铺板试验证实。 Nf1 +/- MSPC中成骨细胞分化受损与在mRNA水平上的成骨细胞标志物(包括骨钙素和骨连接蛋白)表达降低相一致。重要的是,全长NF1 GTPase激活相关域(NF1 GAP相关域)的重新表达足以恢复受损的成骨细胞在Nf1 +/- MSPC中的分化。综上所述,我们的结果表明神经纤维蛋白在调节MSPC向成骨细胞的分化中起着关键作用,而成骨细胞分化的缺陷可能至少部分导致了NF1患者的骨异常。

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