首页> 外文期刊>Journal of cellular biochemistry. >Binding of two nuclear factors to a novel silencer element in human dentin matrix protein 1 (DMP1) promoter regulates the cell type-specific DMP1 gene expression.
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Binding of two nuclear factors to a novel silencer element in human dentin matrix protein 1 (DMP1) promoter regulates the cell type-specific DMP1 gene expression.

机译:两个核因子与人类牙本质基质蛋白1(DMP1)启动子中的新型消音元件的结合调节细胞类型特异性DMP1基因的表达。

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摘要

DMP1 is an acidic phosphorylated protein with the spatial and temporal expression that is largely restricted to bone and tooth tissues. The biological function of DMP1 is associated with biomineralization of bone, cartilage and tooth development. To study the cell-specific expression of DMP1, a 2,512 bp upstream segment of the human gene was isolated and characterized. A series of progressive deletions of the human DMP1 5' flanking sequence were ligated to the luciferase reporter gene, and their promoter activities examined in transfected human osteoblast-like (MG-63) and dental pulp (HDP-D) cells that express DMP1 and hepatic (HepG2) and uterine (HeLa) cells lacking DMP1 expression. A critical cis-regulatory element located between nt -150 and -63 was found to act as a specific silencer responsible for the negative regulation of DMP1 in HepG2 and HeLa cells. The transcriptional activity of this element in MG-63 and HDP-D cells had a 5-7-fold increase than that observed in HepG2 and HeLa cells. Electrophoretic mobility shift assays (EMSAs) showed that a 6-bp DNA sequence in this element was bound by two nuclear factors that are expressed at high levels in HepG2 and HeLa versus MG-63 and HDP-D cells. Competitive assays by EMSAs suggest that the 6-bp core DNA sequence, AG(T/C)C(A/G)C, is a novel DNA-protein binding site and conserved with high identity in reported DMP1 promoters for all species. Furthermore, point mutations of the core sequence caused a marked increase of DMP1 promoter activity in HepG2 and HeLa cells. We speculate that this silencing cis-element may play a critical role in the regulation of DMP1 cell-specific expression.
机译:DMP1是一种酸性磷酸化蛋白,其时空表达在很大程度上局限于骨骼和牙齿组织。 DMP1的生物学功能与骨骼,软骨和牙齿发育的生物矿化有关。为了研究DMP1的细胞特异性表达,分离并鉴定了人类基因的2,512 bp上游片段。将人DMP1 5'侧翼序列的一系列进行性缺失连接至萤光素酶报道基因,并在表达DMP1和DMP1的转染人成骨细胞样(MG-63)和牙髓(HDP-D)细胞中检测其启动子活性。缺乏DMP1表达的肝(HepG2)和子宫(HeLa)细胞。发现位于核苷酸-150和-63之间的关键顺式调控元件起着特定的沉默子作用,对HepG2和HeLa细胞中DMP1的负调控。该元素在MG-63和HDP-D细胞中的转录活性比在HepG2和HeLa细胞中观察到的活性高5-7倍。电泳迁移率迁移分析(EMSA)表明,该元件中的6 bp DNA序列受两个核因子结合,在HepG2和HeLa中相对于MG-63和HDP-D细胞高表达。 EMSA的竞争性检测表明,6 bp的核心DNA序列AG(T / C)C(A / G)C是一个新颖的DNA-蛋白质结合位点,并且在所有物种的DMP1启动子中均具有高度同一性。此外,核心序列的点突变导致HepG2和HeLa细胞中DMP1启动子活性显着增加。我们推测这种沉默的顺式元件可能在DMP1细胞特异性表达的调节中发挥关键作用。

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