首页> 外文期刊>Matrix biology: Journal of the International Society for Matrix Biology >Tissue- and bone cell-specific expression of bone sialoprotein is directed by a 9.0 kb promoter in transgenic mice.
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Tissue- and bone cell-specific expression of bone sialoprotein is directed by a 9.0 kb promoter in transgenic mice.

机译:骨唾液蛋白的组织和骨细胞特异性表达是由转基因小鼠中的9.0 kb启动子指导的。

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摘要

Bone sialoprotein (BSP) is a phosphorylated glycoprotein that is expressed almost exclusively in mineralizing connective tissues. In bone, expression of BSP correlates with the differentiation of osteoblasts and the onset of mineralization. To determine how the tissue- and differentiation-specific transcription of BSP is regulated, various lengths of promoter sequence were ligated to a luciferase reporter and stably transfected into a rat stromal bone marrow cell line, RBMC-D8 and undifferentiated C3H10T1/2 cells. Luciferase transcription of reporter constructs including 5.4 kb (mBSP5.4Luc) and 9.0 kb (mBSP9.0Luc) of the BSP promoter was strongly up-regulated in parallel with endogenous BSP mRNA in differentiating SBMCs, but not in C3H10T1/2 cells. In contrast, 0.1 kb and 1.4 kb BSP promoter constructs did not show selective expression. To determine tissue-specific expression in vivo, transgenic mice expressing reporter constructs for the 9.0 kb promoter and a 4.8 kb promoter lacking two upstream Cbfa1/Runx2 elements (mBSP9.0Luc and mBSP4.8Luc, respectively) were generated. Analysis of various tissues collected from 1-, 4-, 7-, 14-, and 42-day-old mice revealed extremely high levels of luciferase activity in calvaria, mandible, and tibia of the mBSP9.0Luc mice. In contrast, soft tissues showed negligible luciferase expression. Mice harboring the 4.8 kb transgene also showed selective luciferase expression but displayed a significantly lower activity in mineralized tissues. Northern hybridization of endogenous BSP mRNA and immunostaining of BSP in mBSP9.0Luc mice showed a temporo-spatial expression pattern consistent with the luciferase activity. These results indicate that regulatory elements within the 9.0 kb region of the promoter are required for strong, tissue- and differentiation-specific expression of BSP.
机译:骨唾液蛋白(BSP)是磷酸化的糖蛋白,几乎仅在矿化的结缔组织中表达。在骨中,BSP的表达与成骨细胞的分化和矿化的开始有关。为了确定BSP的组织特异性和分化特异性转录调控方式,将各种长度的启动子序列连接到萤光素酶报道分子上,并稳定转染到大鼠基质骨髓细胞系RBMC-D8和未分化的C3H10T1 / 2细胞中。包括5.4 kb(mBSP5.4Luc)和9.0 kb(mBSP9.0Luc)的BSP启动子在内的报告基因构建体的萤光素酶转录在分化SBMC中与内源性BSP mRNA平行上调,但在C3H10T1 / 2细胞中则没有。相反,0.1 kb和1.4 kb BSP启动子构建体未显示选择性表达。为了确定体内组织特异性表达,产生了表达9.0kb启动子和4.8kb启动子的报告子构建体的转基因小鼠,该报告子构建体缺少两个上游Cbfa1 / Runx2元件(分别为mBSP9.0Luc和mBSP4.8Luc)。从1、4、7、14和42天龄小鼠收集的各种组织的分析表明,mBSP9.0Luc小鼠的颅骨,下颌骨和胫骨中荧光素酶活性水平极高。相反,软组织显示的荧光素酶表达可忽略不计。带有4.8 kb转基因的小鼠也显示选择性荧光素酶表达,但在矿化组织中显示出明显较低的活性。内源性BSP mRNA的Northern杂交和mBSP9.0Luc小鼠中BSP的免疫染色显示了与荧光素酶活性一致的时空表达模式。这些结果表明,BSP的强,组织和分化特异性表达需要启动子9.0 kb区域内的调控元件。

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