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在常氧成纤维细胞中,单链DNA结合冷休克结构域(Y盒)蛋白对血管内皮生长因子启动子的一种新型抑制机制。

A novel mechanism of repression of the vascular endothelial growth factor promoter, by single strand DNA binding cold shock domain (Y-box) proteins in normoxic fibroblasts.

作者信息

Coles Leeanne S, Diamond Peter, Lambrusco Lidia, Hunter Julie, Burrows Julie, Vadas Mathew A, Goodall Gregory J

机构信息

Division of Human Immunology, The Hanson Centre for Cancer Research, Institute of Medical and Veterinary Science, Frome Road, Adelaide, SA 5000, Australia.

出版信息

Nucleic Acids Res. 2002 Nov 15;30(22):4845-54. doi: 10.1093/nar/gkf615.

Abstract

Overexpression of vascular endothelial growth factor (VEGF) is implicated in a number of diseases. It is therefore critical that mechanisms exist to strictly regulate VEGF expression. A hypoxia-responsive (HR) region of the VEGF promoter which binds the HIF-1 transcription factor is a target for many signals that up-regulate VEGF transcription. Repressors targeting the HIF-1 transcription factor have been identified but no repressors directly binding the HR promoter region had been reported. We now report a novel mechanism of repression of the VEGF HR region involving DNA binding. We find that single strand DNA-specific cold shock domain (CSD or Y-box) proteins repress the HR region via a binding site downstream of the HIF-1 site. The repressor site is functional in unstimulated, normoxic fibroblasts and represents a novel means to prevent expression of VEGF in the absence of appropriate stimuli. We characterized complexes forming on the VEGF repressor site and identified a previously unreported nuclear CSD protein complex containing dbpA. Nuclear dbpA appears to bind as a dimer and we determined a means by which nuclear CSD proteins may enter double strand DNA to bind to their single strand sites to bring about repression of the VEGF HR region.

摘要

血管内皮生长因子(VEGF)的过表达与多种疾病有关。因此,存在严格调控VEGF表达的机制至关重要。VEGF启动子的缺氧反应(HR)区域可结合缺氧诱导因子-1(HIF-1)转录因子,是许多上调VEGF转录信号的作用靶点。已鉴定出靶向HIF-1转录因子的阻遏物,但尚未报道直接结合HR启动子区域的阻遏物。我们现在报道一种涉及DNA结合的VEGF HR区域的新型抑制机制。我们发现单链DNA特异性冷休克结构域(CSD或Y盒)蛋白通过HIF-1位点下游的结合位点抑制HR区域。该阻遏物位点在未受刺激的常氧成纤维细胞中具有功能,代表了在缺乏适当刺激时防止VEGF表达的一种新方式。我们对在VEGF阻遏物位点形成的复合物进行了表征,并鉴定出一种先前未报道的包含dbpA的核CSD蛋白复合物。核dbpA似乎以二聚体形式结合,我们确定了一种核CSD蛋白可能进入双链DNA以结合其单链位点从而抑制VEGF HR区域的方式。

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