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根据软骨细胞的分化状态,SOX9对II型胶原基因(COL2A1)的表达具有双功能作用。

SOX9 exerts a bifunctional effect on type II collagen gene (COL2A1) expression in chondrocytes depending on the differentiation state.

作者信息

Kypriotou Magdalini, Fossard-Demoor Magali, Chadjichristos Christos, Ghayor Chafik, de Crombrugghe Benoit, Pujol Jean-Pierre, Galéra Philippe

机构信息

Laboratoire de Biochimie du Tissu Conjonctif, Faculté de Médecine, Caen Cedex, France.

出版信息

DNA Cell Biol. 2003 Feb;22(2):119-29. doi: 10.1089/104454903321515922.

Abstract

As a key transcription factor in cartilage formation, SOX9 is a potent activator of type II collagen expression, a phenotypic marker of articular chondrocytes. This study was designed to determine the potential role of SOX9 on COL2A1 gene transcription during chondrocyte dedifferentiation, a characteristic feature of osteoarthritic cartilage that can be partially mimicked in vitro by subculturing primary chondrocytes. Constructs containing different regions from the promoter and the first intron of human COL2A1 gene were transfected in differentiated (primary) and dedifferentiated (passaged) rabbit articular chondrocytes (RAC), together with an expression vector containing or not the SOX9 cDNA. As expected, low levels of SOX9 overexpression were capable of enhancing COL2A1 gene transcription in both fully differentiated and slightly phenotypically altered chondrocytes, through the specific intronic enhancer. In contrast, when overexpressed at high levels, SOX9 induced an inhibition of COL2A1 gene expression, mediated by the -266 bp promoter region, whatever the differentiation state of chondrocytes. However, in the advanced stages of dedifferentiation, SOX9, independently of its expression level, depressed COL2A1 transcriptional activity through the -63 bp short promoter. Although SOX9 has a crucial role in chondrocyte differentiation, our findings indicate that this factor cannot restore the phenotype of osteoarthritic chondrocytes by itself.

摘要

作为软骨形成中的关键转录因子,SOX9是II型胶原蛋白表达的强效激活剂,而II型胶原蛋白是关节软骨细胞的表型标志物。本研究旨在确定SOX9在软骨细胞去分化过程中对COL2A1基因转录的潜在作用,软骨细胞去分化是骨关节炎软骨的一个特征,可通过原代软骨细胞传代培养在体外部分模拟。将含有来自人COL2A1基因启动子和第一个内含子不同区域的构建体转染到分化的(原代)和去分化的(传代)兔关节软骨细胞(RAC)中,同时转染含有或不含有SOX9 cDNA的表达载体。正如预期的那样,低水平的SOX9过表达能够通过特定的内含子增强子在完全分化和表型略有改变的软骨细胞中增强COL2A1基因转录。相反,当高水平过表达时,无论软骨细胞的分化状态如何,SOX9都会通过-266 bp启动子区域诱导COL2A1基因表达的抑制。然而,在去分化的晚期阶段,SOX9无论其表达水平如何,都会通过-63 bp短启动子抑制COL2A1转录活性。尽管SOX9在软骨细胞分化中起关键作用,但我们的研究结果表明,该因子自身无法恢复骨关节炎软骨细胞的表型。

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