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Nmp4 restricts bone marrow osteoprogenitors and parathyroid hormone induced bone formation in healthy and estrogen depleted female mice

机译:Nmp4限制健康和雌激素缺乏的雌性小鼠的骨髓骨祖细胞和甲状旁腺激素诱导的骨形成

摘要

We have shown that nuclear matrix protein 4 (Nmp4) attenuates the response to intermittent parathyroid hormone (PTH) in healthy and ovariectomized (OVX) female mice using a global knockout of the Nmp4 gene. Additionally, these mice have increased bone marrow osteoprogenitors and CD8+ T-cells which support osteoblast differentiation. The animals were not protected from bone loss following OVX, but retained the hypersensitivity seen in the intact mice. Mesenchymal stem/progenitor cells (osteoprogenitors) demonstrated increased growth rate in culture and showed more robust differentiation into mineralizing bone cells. Chromosome precipitation followed by next generation sequencing and bioinformatics analysis characterized Nmp4 as a negative regulator of synthetic processes and suggested the IGF1/Akt and BMP2/Smad biochemical pathways which are likely targets for Nmp4 regulation. We have experimentally verified these pathways in immortalized bone marrow mesenchymal cells from wild type and Nmp4-KO mice. Disabling Nmp4 in estrogen replete or depleted mice confers an enhanced bone formation from intermittent parathyroid hormone.
机译:我们已经显示核基质蛋白4(Nmp4)在健康和卵巢切除(OVX)雌性小鼠中使用Nmp4基因的整体敲除减弱了对间歇性甲状旁腺激素(PTH)的反应。此外,这些小鼠具有增加的骨髓成骨祖细胞和支持成骨细胞分化的CD8 + T细胞。在OVX后,没有保护动物免受骨丢失的影响,但保留了在完整小鼠中看到的超敏反应。间充质干/祖细胞(骨祖细胞)在培养中显示出增加的生长速率,并显示出更强大的分化成矿化骨细胞的能力。染色体沉淀以及随后的下一代测序和生物信息学分析将Nmp4表征为合成过程的负调节剂,并暗示了IGF1 / Akt和BMP2 / Smad生化途径可能是Nmp4调控的目标。我们已经从野生型和Nmp4-KO小鼠的永生化骨髓间充质细胞中实验验证了这些途径。在雌激素充足或衰竭的小鼠中禁用Nmp4可使间歇性甲状旁腺激素的骨形成增强。

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  • 作者

    Childress Paul Jeffrey;

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  • 年度 2014
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  • 正文语种 en_US
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