首页> 外文OA文献 >Transgenic expression of COL1A1-chloramphenicol acetyltransferase fusion genes in bone: differential utilization of promoter elements in vivo and in cultured cells.
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Transgenic expression of COL1A1-chloramphenicol acetyltransferase fusion genes in bone: differential utilization of promoter elements in vivo and in cultured cells.

机译:骨中COL1A1-氯霉素乙酰转移酶融合基因的转基因表达:体内和培养细胞中启动子元件的差异利用。

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摘要

To directly compare the patterns of collagen promoter expression in cells and tissues, the activity of COL1A1 fusion genes in calvariae of neonatal transgenic mice and in primary bone cell cultures derived by sequential digestion of transgenic calvariae was measured. ColCAT3.6 contains 3.6 kb (positions -3521 to +115) of the rat COL1A1 gene ligated to the chloramphenicol acetyltransferase (CAT) reporter gene. ColCAT2.3 and ColCAT1.7 are 5' deletion mutants which contain 2,296 and 1,672 bp, respectively, of COL1A1 DNA upstream from the transcription start site. ColCAT3.6 activity was 4- to 6-fold lower in primary bone cell cultures than in intact calvariae, while ColCAT2.3 activity was at least 100-fold lower in primary bone cells than in calvariae. These changes were accompanied by a threefold decrease in collagen synthesis and COL1A1 mRNA levels in primary bone cells compared with collagen synthesis and COL1A1 mRNA levels in freshly isolated calvariae. ColCAT3.6 and ColCAT2.3 activity was maintained in calvariae cultured in the presence or absence of serum for 4 to 7 days. Thus, when bone cells are removed from their normal microenvironment, there is parallel downregulation of collagen synthesis, collagen mRNA levels, and ColCAT3.6 activity, with a much greater decrease in ColCAT2.3. These data suggest that a 624-bp region of the COL1A1 promoter between positions -2296 and -1672 is active in intact and cultured bone but inactive in cultured cells derived from the bone. We suggest that the downregulation of COL1A1 activity in primary bone cells may be due to the loss of cell shape or to alterations in cell-cell and/or cell-matrix interactions that normally occur in intact bone.
机译:为了直接比较细胞和组织中胶原启动子的表达模式,测定了新生转基因小鼠颅骨和通过顺序消化转基因颅骨得到的原代骨细胞培养物中COL1A1融合基因的活性。 ColCAT3.6包含与氯霉素乙酰基转移酶(CAT)报告基因连接的3.6 kb(-3521至+115位)大鼠COL1A1基因。 ColCAT2.3和ColCAT1.7是5'缺失突变体,在转录起始位点上游分别含有2,296和1,672 bp的COL1A1 DNA。在原始骨细胞培养物中,ColCAT3.6活性比完整的颅盖骨低4至6倍,而在原始骨细胞中,ColCAT2.3活性比在颅盖骨中低至少100倍。与新鲜分离的颅盖骨中的胶原蛋白合成和COL1A1 mRNA水平相比,这些变化伴随着原骨细胞中胶原蛋白合成和COL1A1 mRNA水平的三倍下降。在有或没有血清的情况下培养的颅盖中维持4至7天的ColCAT3.6和ColCAT2.3活性。因此,当骨细胞从正常微环境中移出时,胶原蛋白合成,胶原蛋白mRNA水平和ColCAT3.6活性平行下调,而ColCAT2.3下降得更多。这些数据表明,COL1A1启动子的一个624-bp区域位于位置-2296和-1672之间,在完整和培养的骨中有活性,但在来源于骨的培养细胞中无活性。我们建议原代骨细胞中COL1A1活性的下调可能是由于细胞形状的丧失或正常情况下在完整骨骼中发生的细胞-细胞和/或细胞-基质相互作用的改变。

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