Gille J, Swerlick R A, Caughman S W
Zentrum der Dermatologie, Klinikum der J.W. Goethe-Universität, Frankfurt, Germany.
EMBO J. 1997 Feb 17;16(4):750-9. doi: 10.1093/emboj/16.4.750.
The endothelial cell-specific mitogen vascular permeability factor/vascular endothelial growth factor (VPF/VEGF) represents a central regulator of cutaneous angiogenesis. Increased VPF/VEGF expression has recently been reported in psoriatic skin and healing wounds, both conditions in which transforming growth factor-alpha (TGF alpha) and its ligand, the epidermal growth factor receptor, are markedly up-regulated. Since TGF alpha strongly induces VPF/VEGF synthesis in keratinocytes, TGF alpha-mediated VPF/VEGF expression is likely to play a significant role in the initiation and maintenance of increased vascular hyperpermeability and hyperproliferation in skin biology. The objectives of the present studies were to determine the molecular mechanisms responsible for TGF alpha-induced transcriptional activation of the VPF/VEGF gene. We have identified a GC-rich TGF alpha-responsive region between -88 bp and -65 bp of the VPF/VEGF promoter that is necessary for constitutive and TGF alpha-inducible transcriptional activation. In electrophoretic mobility shift assays, this region binds Sp1-dependent protein complexes constitutively and an additional TGF alpha-inducible protein complex that is distinct from Sp1 protein. Both AP-2 and Egr-1 transcription factors were detected as components of the TGF alpha-inducible protein complex in supershift EMSA studies. In co-transfection studies, an AP-2 but not an Egr-1 expression vector activated VPF/VEGF transcription, thus indicating that AP-2 protein is functionally important in TGF alpha-induced VPF/VEGF gene expression. By clarifying regulatory mechanisms that are critical for angiogenic processes in the skin, these studies may form the basis for new therapeutic strategies to modulate VPF/VEGF expression in cutaneous inflammation and wound healing.
内皮细胞特异性促分裂原血管通透性因子/血管内皮生长因子(VPF/VEGF)是皮肤血管生成的核心调节因子。最近报道,在银屑病皮肤和愈合伤口中VPF/VEGF表达增加,这两种情况中转化生长因子-α(TGFα)及其配体表皮生长因子受体均显著上调。由于TGFα强烈诱导角质形成细胞中VPF/VEGF的合成,TGFα介导的VPF/VEGF表达可能在皮肤生物学中血管通透性增加和细胞过度增殖的起始和维持中起重要作用。本研究的目的是确定TGFα诱导VPF/VEGF基因转录激活的分子机制。我们在VPF/VEGF启动子的-88 bp至-65 bp之间鉴定出一个富含GC的TGFα反应区域,该区域对于组成型和TGFα诱导型转录激活是必需的。在电泳迁移率变动分析中,该区域组成性地结合Sp1依赖性蛋白复合物以及一种不同于Sp1蛋白的额外的TGFα诱导型蛋白复合物。在超迁移EMSA研究中,AP-2和Egr-1转录因子均被检测为TGFα诱导型蛋白复合物的成分。在共转染研究中,AP-2表达载体而非Egr-1表达载体激活了VPF/VEGF转录,因此表明AP-2蛋白在TGFα诱导的VPF/VEGF基因表达中具有重要功能。通过阐明对皮肤血管生成过程至关重要的调节机制,这些研究可能为调节皮肤炎症和伤口愈合中VPF/VEGF表达的新治疗策略奠定基础。