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含有配对Sox9结合位点的高度保守的近端启动子元件有助于母连蛋白-1基因的组织和发育阶段特异性活性。

Highly conserved proximal promoter element harbouring paired Sox9-binding sites contributes to the tissue- and developmental stage-specific activity of the matrilin-1 gene.

作者信息

Rentsendorj Otgonchimeg, Nagy Andrea, Sinkó Ildikó, Daraba Andreea, Barta Endre, Kiss Ibolya

机构信息

Institute of Biochemistry, Biological Research Center of the Hungarian Academy of Sciences, Temesvári krt 62, H-6726 Szeged, Hungary.

出版信息

Biochem J. 2005 Aug 1;389(Pt 3):705-16. doi: 10.1042/BJ20050214.

Abstract

The matrilin-1 gene has the unique feature that it is expressed in chondrocytes in a developmental stage-specific manner. Previously, we found that the chicken matrilin-1 long promoter with or without the intronic enhancer and the short promoter with the intronic enhancer restricted the transgene expression to the columnar proliferative chondroblasts and prehypertrophic chondrocytes of growth-plate cartilage in transgenic mice. To study whether the short promoter shared by these transgenes harbours cartilage-specific control elements, we generated transgenic mice expressing the LacZ reporter gene under the control of the matrilin-1 promoter between -338 and +67. Histological analysis of the founder embryos demonstrated relatively weak transgene activity in the developing chondrocranium, axial and appendicular skeleton with highest level of expression in the columnar proliferating chondroblasts and prehypertrophic chondrocytes. Computer analysis of the matrilin-1 genes of amniotes revealed a highly conserved Pe1 (proximal promoter element 1) and two less-conserved sequence blocks in the distal promoter region. The inverted Sox motifs of the Pe1 element interacted with chondrogenic transcription factors Sox9, L-Sox5 and Sox6 in vitro and another factor bound to the spacer region. Point mutations in the Sox motifs or in the spacer region interfered with or altered the formation of nucleoprotein complexes in vitro and significantly decreased the reporter gene activity in transient expression assays in chondrocytes. In vivo occupancy of the Sox motifs in genomic footprinting in the expressing cell type, but not in fibroblasts, also supported the involvement of Pe1 in the tissue-specific regulation of the gene. Our results indicate that interaction of Pe1 with distal DNA elements is required for the high level, cartilage- and developmental stage-specific transgene expression.

摘要

基质金属蛋白酶-1基因具有独特的特征,即它在软骨细胞中以发育阶段特异性的方式表达。此前,我们发现带有或不带有内含子增强子的鸡基质金属蛋白酶-1长启动子以及带有内含子增强子的短启动子,可将转基因表达限制在转基因小鼠生长板软骨的柱状增殖软骨母细胞和前肥大软骨细胞中。为了研究这些转基因共享的短启动子是否含有软骨特异性控制元件,我们构建了在-338至+67之间的基质金属蛋白酶-1启动子控制下表达LacZ报告基因的转基因小鼠。对奠基胚胎的组织学分析表明,在发育中的软骨颅、轴骨和附肢骨骼中,转基因活性相对较弱,在柱状增殖软骨母细胞和前肥大软骨细胞中表达水平最高。对羊膜动物基质金属蛋白酶-1基因的计算机分析显示,在远端启动子区域有一个高度保守的Pe1(近端启动子元件1)和两个保守性较低的序列块。Pe1元件的反向Sox基序在体外与软骨形成转录因子Sox9、L-Sox5和Sox6相互作用,另一个因子与间隔区结合。Sox基序或间隔区的点突变在体外干扰或改变了核蛋白复合物的形成,并在软骨细胞的瞬时表达试验中显著降低了报告基因的活性。在表达细胞类型而非成纤维细胞的基因组足迹分析中,Sox基序在体内的占据情况也支持了Pe1参与该基因的组织特异性调控。我们的结果表明,Pe1与远端DNA元件的相互作用是高水平、软骨和发育阶段特异性转基因表达所必需的。

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