Kantola Anna K, Keski-Oja Jorma, Koli Katri
Department of Virology, Haartman Institute and Helsinki University Hospital, University of Helsinki, Biomedicum Rm A506, P.O.Box 63, Haartmaninkatu 8, 00014 Helsinki, Finland.
Gene. 2005 Dec 19;363:142-50. doi: 10.1016/j.gene.2005.07.042. Epub 2005 Oct 11.
Latent TGF-beta binding proteins (LTBPs) are extracellular matrix glycoproteins, which are essential for the targeting and activation of TGF-betas. LTBP-3 regulates the bioavailability of TGF-beta especially in the bone. To understand the regulation of LTBP-3 expression, we have isolated and characterized the promoter region of human LTBP-3 gene. The GC-rich TATA-less promoter contained several transcription initiation sites and putative binding sites for multiple sequence specific transcription factors including Sp1, AP-1, c-Ets, MZF-1, Runx1 and members of the GATA-family. Reporter gene analyses of the promoter indicated that it was more active in MG-63 than in Saos-2 osteosarcoma cells, suggesting that it is regulated as the endogenous gene. TGF-beta1 stimulated the transcriptional activity of LTBP-3 promoter in MG-63 cells, while certain other bone-derived growth factors and hormones were ineffective. TGF-beta1 increased LTBP-3 mRNA levels accordingly. Analyses of deletion constructs of the promoter and mutational deletion of specific transcription factor binding sites indicated that Smad3/4 and AP-1 binding sites mediated the TGF-beta1 response. The involvement of AP-1 activity was further indicated by decreased TGF-beta responsiveness of the LTBP-3 promoter in the presence of a MEK/Erk signaling pathway inhibitor. Our results suggest an important new role for TGF-beta1 in the regulation of its binding protein, LTBP-3.
潜伏性转化生长因子β结合蛋白(LTBPs)是细胞外基质糖蛋白,对于转化生长因子β的靶向作用和激活至关重要。LTBP - 3调节转化生长因子β的生物利用度,尤其是在骨骼中。为了解LTBP - 3表达的调控机制,我们分离并鉴定了人LTBP - 3基因的启动子区域。富含GC且无TATA的启动子包含多个转录起始位点以及多个序列特异性转录因子的推定结合位点,包括Sp1、AP - 1、c - Ets、MZF - 1、Runx1和GATA家族成员。对该启动子的报告基因分析表明,它在MG - 63细胞中的活性高于在Saos - 2骨肉瘤细胞中的活性,这表明它与内源性基因一样受到调控。转化生长因子β1刺激了MG - 63细胞中LTBP - 3启动子的转录活性,而某些其他骨源性生长因子和激素则无此作用。转化生长因子β1相应地增加了LTBP - 3 mRNA水平。对启动子缺失构建体和特定转录因子结合位点的突变缺失分析表明,Smad3/4和AP - 1结合位点介导了转化生长因子β1的反应。在存在MEK/Erk信号通路抑制剂的情况下,LTBP - 3启动子对转化生长因子β的反应性降低,进一步表明了AP - 1活性的参与。我们的结果表明转化生长因子β1在其结合蛋白LTBP - 3的调控中具有重要的新作用。