首页> 美国卫生研究院文献>Molecular Endocrinology >Receptor Activator of Nuclear Factor-κB Ligand-Induced Nuclear Factor of Activated T Cells (C1) Autoregulates Its Own Expression in Osteoclasts and Mediates the Up-Regulation of Tartrate-Resistant Acid Phosphatase
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Receptor Activator of Nuclear Factor-κB Ligand-Induced Nuclear Factor of Activated T Cells (C1) Autoregulates Its Own Expression in Osteoclasts and Mediates the Up-Regulation of Tartrate-Resistant Acid Phosphatase

机译:核因子-κB配体诱导的活化T细胞核因子(C1)的受体激活因子自动调节其在破骨细胞中的表达并介导抗酒石酸酸性磷酸酶的上调。

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摘要

Osteoclasts are large multinucleated, bone-resorbing cells derived from hematopoietic precursors in response to receptor activator of nuclear factor-κB ligand (RANKL). RANKL activates a number of signal transduction pathways, which stimulate, in turn, a series of specific transcription factors that initiate the process of osteoclastogenesis. Perhaps the most important of these is nuclear factor of activated T cells cytoplasmic 1 (NFATc1), a DNA-binding protein that upon activation translocates to the nucleus where it stimulates transcription. The objective of this study was to explore the process whereby RANKL induces NFATc1 and to assess the role of this factor in the activation of an additional key osteoclast target gene. We found that whereas several NFAT members are expressed in RAW264.7 cells, soluble RANKL-induced up-regulation is limited to NFATc1 through a mechanism that is largely autoregulatory. Thus, although we observed the presence of resident NFAT members at the inducible Nfatc1 P1 promoter at very early times after RANKL treatment, a selective and time-dependent increase in the binding of up-regulated NFATc1 to Nfatc1 was observed beginning at 12 h. Several additional factors that are activated by soluble RANKL and also participate in NFATc1 up-regulation include c-Fos and RNA polymerase II. Chromatin immunoprecipitation analysis also revealed a similar, time-dependent accumulation of NFATc1 at multiple sites on the Acp5 promoter, thereby highlighting a central contributing role for NFATc1 in the activation of this gene as well. Our studies provide additional molecular detail regarding the mechanisms through which RANKL induces NFATc1 in osteoclast precursors and into mechanisms by which NFATc1 induces the expression of at least one gene responsible for the osteoclast phenotype.
机译:破骨细胞是响应于核因子-κB配体(RANKL)的受体活化剂而衍生自造血前体的大的多核骨吸收细胞。 RANKL激活许多信号转导途径,进而刺激一系列特定的转录因子,这些因子启动破骨细胞生成过程。其中最重要的可能是激活的T细胞胞质1(NFATc1)的核因子,这是一种DNA结合蛋白,激活后会转移到核内,刺激转录。这项研究的目的是探索RANKL诱导NFATc1的过程,并评估该因子在其他关键破骨细胞靶基因激活中的作用。我们发现,尽管几个NFAT成员在RAW264.7细胞中表达,但可溶性RANKL诱导的上调通过很大程度上是自动调节的机制仅限于NFATc1。因此,尽管我们在RANKL处理后很早的时间观察到了可诱导的Nfatc1 P1启动子上存在常驻NFAT成员,但是从12小时开始观察到上调的NFATc1与Nfatc1的结合发生了选择性和时间依赖性。可溶性RANKL激活并参与NFATc1上调的其他几个因子包括c-Fos和RNA聚合酶II。染色质免疫沉淀分析还揭示了NFATc1在Acp5启动子的多个位点上有类似的时间依赖性积累,从而突出了NFATc1在激活该基因方面的重要作用。我们的研究提供了有关RANKL诱导破骨细胞前体中NFATc1的机制以及NFATc1诱导至少一个负责破骨细胞表型的基因表达的机制的其他分子细节。

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