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Immortalization and characterization of osteoblast cell lines generated from wild-type and Nmp4-null mouse bone marrow stromal cells using murine telomerase reverse transcriptase (mTERT)

机译:鼠端粒酶逆转录酶(MTERT)野生型和NMP4 - 空小鼠骨髓基质细胞产生的骨质细胞细胞系中的化和表征

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摘要

Intermittent parathyroid hormone (PTH) adds new bone to the osteoporotic skeleton; the transcription factor Nmp4/CIZ represses PTH-induced bone formation in mice and as a consequence is a potential drug target for improving hormone clinical efficacy. To explore the impact of Nmp4/CIZ on osteoblast phenotype, we immortalized bone marrow stromal cells from wildtype (WT) and Nmp4-knockout (KO) mice using murine telomerase reverse transcriptase. Clonal lines were initially chosen based on their positive staining for alkaline phosphatase and capacity for mineralization. Disabling Nmp4/CIZ had no gross impact on osteoblast phenotype development. WT and KO clones exhibited identical sustained growth, reduced population doubling times, extended maintenance of the mature osteoblast phenotype, and competency for differentiating toward the osteoblast and adipocyte lineages. Additional screening of the immortalized cells for PTH-responsiveness permitted further studies with single WT and KO clones. We recently demonstrated that PTH-induced c-fos femoral mRNA expression is enhanced in Nmp4-KO mice and in the present study we observed that hormone stimulated either an equivalent or modestly enhanced increase in c-fos mRNA expression in both primary null and KO clone cells depending on PTH concentration. The null primary osteoblasts and KO clone cells exhibited a transiently enhanced response to bone morphogenetic protein 2 (BMP2). The clones exhibited lower and higher expressions of the PTH receptor (Pthr1) and the BMP2 receptor (Bmpr1a, ALK3), respectively, as compared to primary cells. These immortalized cell lines will provide a valuable tool for disentangling the complex functional roles underlying Nmp4/CIZ regulation of bone anabolism.
机译:间歇性甲状旁腺激素(PTH)为骨质疏松骨架添加新骨骼;转录因子NMP4 / CIZ在小鼠中抑制PTH诱导的骨形成,结果是提高激素临床疗效的潜在药物靶标。为了探讨NMP4 / CIZ对成骨细胞表型的影响,我们使用鼠端粒酶逆转录酶从野生型(WT)和NMP4敲除(KO)小鼠中永生化骨髓基质细胞。最初基于其碱性磷酸酶的阳性染色和矿化能力,最初选择克隆物系。禁用NMP4 / CIZ对成骨细胞表型发育没有严重影响。 WT和KO克隆表现出相同的持续生长,降低人群倍增时间,延长成熟成骨细胞表型的延长维持,以及朝向成骨细胞和脂肪细胞谱系分化的能力。对于PTH-响应性的不朽细胞的另外的筛选允许用单个WT和KO克隆进行进一步的研究。我们最近证明,在NMP4-KO小鼠中,PTH诱导的C-FOS股骨mRNA表达在NMP4-KO小鼠中增强,在本研究中,我们观察到激素刺激了初级无效和KO克隆中的C-FOS mRNA表达的等同或适度增强的增加细胞取决于PTH浓度。 Null主骨细胞和KO克隆细胞表现出对骨形态发生蛋白2(BMP2)的瞬时增强的反应。与原代细胞相比,克隆分别表现出PTH受体(PTHR1)和BMP2受体(BMPR1A,ALK3)的较低和较高表达。这些永生化的细胞系将提供一种有价值的工具,用于解开骨骼合成的NMP4 / CIZ调节的复杂功能角色。

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