首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Coordinate occupancy of AP-1 sites in the vitamin D-responsive and CCAAT box elements by Fos-Jun in the osteocalcin gene: model for phenotype suppression of transcription.
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Coordinate occupancy of AP-1 sites in the vitamin D-responsive and CCAAT box elements by Fos-Jun in the osteocalcin gene: model for phenotype suppression of transcription.

机译:骨钙素基因中的Fos-Jun协调维生素D反应性和CCAAT框元件中AP-1位点的占据:转录表型抑制模型。

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摘要

Osteocalcin, a bone-specific protein and marker of the mature osteoblast, is expressed only in nonproliferating osteoblasts in a mineralizing extracellular matrix, while type I collagen is expressed in proliferating cells. The nuclear proteins encoded by the c-fos and c-jun protooncogenes are expressed during the proliferation period of osteoblast phenotype development. We present evidence that AP-1 (HeLa cell-activating protein 1) sites residing within two promoter elements of the osteocalcin gene bind the Fos-Jun protein complex: the osteocalcin box (OC box; nucleotides -99 to -76), which contains a CCAAT motif as a central element and influences tissue-specific basal levels of osteocalcin gene transcription, and the vitamin D-responsive element (VDRE; nucleotides -462 to -440), which mediates enhancement of osteocalcin gene transcription. Gel electrophoretic mobility-shift analysis demonstrated high AP-1 binding activity in proliferating osteoblasts and dramatic changes in this activity after the down-regulation of proliferation and the initiation of extracellular-matrix mineralization in primary cultures of normal diploid osteoblasts. Methylation interference analysis established at single nucleotide resolution that purified recombinant Fos and Jun proteins bind in a sequence-specific manner to the AP-1 sites within the VDRE and OC box. Similarly, an AP-1 motif within a putative VDRE of the alkaline phosphatase gene, which is also expressed after the completion of proliferation, binds the Fos-Jun complex. These results support a model in which coordinate occupancy of the AP-1 sites in the VDRE and OC box in proliferating osteoblasts may suppress both basal level and vitamin D-enhanced osteocalcin gene transcription as well as transcription of other genes associated with osteoblast differentiation--a phenomenon we describe as phenotype suppression. This model is further supported by binding of the Fos-Jun complex at an AP-1 site in the type alpha I collagen promoter that is contiguous with, but not overlapping, the VDRE. Such a sequence organization in the collagen VDRE motif is compatible with vitamin D modulation of collagen but not with osteocalcin and alkaline phosphatase expression in proliferating osteoblasts.
机译:骨钙素是成熟成骨细胞的一种骨特异性蛋白和标志物,仅在矿化细胞外基质中的非增殖性成骨细胞中表达,而I型胶原则在增殖性细胞中表达。 c-fos和c-jun原癌基因编码的核蛋白在成骨细胞表型发育的增殖期表达。我们提供的证据表明,位于骨钙蛋白基因两个启动子内的AP-1(HeLa细胞激活蛋白1)位点与Fos-Jun蛋白复合物结合:骨钙蛋白盒(OC盒;核苷酸-99至-76),其中包含CCAAT基序作为核心元素,影响骨钙蛋白基因转录的组织特异性基础水平,以及维生素D响应元件(VDRE;核苷酸-462至-440),介导骨钙蛋白基因转录的增强。凝胶电泳迁移率迁移分析表明,在正常二倍体成骨细胞的原代培养中,增殖的下调和细胞外基质矿化的开始后,AP-1在增殖的成骨细胞中具有很高的结合活性,并且该活性发生了显着变化。以单核苷酸分辨率建立的甲基化干扰分析,即纯化的重组Fos和Jun蛋白以序列特异性方式与VDRE和OC盒内的AP-1位点结合。同样,在碱性磷酸酶基因推定的VDRE内的AP-1基序与Fos-Jun复合物结合,该基团在增殖完成后也表达。这些结果支持了一个模型,其中在增生的成骨细胞中VDRE和OC盒中AP-1位点的协调占用可能会抑制基础水平和维生素D增强的骨钙素基因转录以及与成骨细胞分化相关的其他基因的转录-我们将其描述为表型抑制现象。 Fos-Jun复合物在与VDRE相邻但不重叠的αI型胶原启动子中AP-1位点的结合进一步支持了该模型。胶原蛋白VDRE基序中的这种序列组织与胶原蛋白的维生素D调节相容,但与增生的成骨细胞中的骨钙素和碱性磷酸酶表达不相容。

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