Koos Robert D, Kazi Armina A, Roberson Mark S, Jones Jenny M
Department of Physiology, University of Maryland School of Medicine, Baltimore, MD 21201-1559, USA.
Ann N Y Acad Sci. 2005 May;1041:233-47. doi: 10.1196/annals.1282.037.
Increased uterine capillary permeability, which can be induced by both estrogen and relaxin, is required for endometrial growth and implantation. This effect is mediated in both cases by estrogen receptors (ERs), via stimulation of vascular endothelial growth factor (VEGF) expression. The sites on the VEGF promoter through which induction occurs, however, are completely unclear. We have used the technique of chromatin immunoprecipitation in vivo to localize the site of ER action and identify other transcription factors that are involved. We have found that ERa associates with Sp1/Sp3 at a GC-rich region of the promoter. More interesting, however, is the observation that estrogen also induces rapid, transient binding of hypoxia-inducible factor 1 (HIF-1), which mediates VEGF transcription in response to hypoxia, to the promoter. The estrogen-induced HIF-1 binding closely matches the estrogen-induced pattern of VEGF expression in the uterus, suggesting that HIF-1 is involved in that induction, and probably that of many other genes as well (HIF-1 is now known to regulate the expression of more than 40 genes). It is likely that studies now under way will also link relaxin-induced VEGF expression to HIF-1. This is based on the similarities in the effects of the two hormones on VEGF expression and on their shared ability to activate the PI3K and MAPK pathways, both of which can activate HIF-1.
子宫内膜生长和着床需要增加子宫毛细血管通透性,雌激素和松弛素均可诱导这种通透性增加。在这两种情况下,这种效应均由雌激素受体(ERs)介导,通过刺激血管内皮生长因子(VEGF)表达来实现。然而,雌激素诱导VEGF表达的启动子位点尚完全不清楚。我们利用体内染色质免疫沉淀技术来定位ER作用位点,并确定其他参与的转录因子。我们发现,ERα在启动子富含GC的区域与Sp1/Sp3结合。然而,更有趣的是观察到雌激素还能诱导缺氧诱导因子1(HIF-1)迅速、短暂地与启动子结合,HIF-1在缺氧时介导VEGF转录。雌激素诱导的HIF-1结合与子宫中雌激素诱导的VEGF表达模式密切匹配,这表明HIF-1参与了该诱导过程,可能还参与了许多其他基因的诱导过程(现已知道HIF-1可调节40多个基因的表达)。目前正在进行的研究可能也会将松弛素诱导的VEGF表达与HIF-1联系起来。这是基于这两种激素对VEGF表达的影响相似,以及它们激活PI3K和MAPK途径的共同能力,这两条途径均可激活HIF-1。