Department of Pathology and Laboratory Medicine, Division of Cancer and Developmental Biology, University of Kansas Medical Center, Kansas City, Kansas 66160, USA.
J Biol Chem. 2010 Dec 31;285(53):41567-77. doi: 10.1074/jbc.M110.190025. Epub 2010 Nov 1.
Angiogenesis is critically dependent on endothelial cell-specific transcriptional mechanisms. However, the molecular processes that regulate chromatin domains and thereby dictate transcription of key endothelial genes are poorly understood. Here, we report that, in endothelial cells, angiogenic signal-mediated transcriptional induction of Vegfr1 (vascular endothelial growth factor receptor 1) is dependent on the histone chaperone, HIRA (histone cell cycle regulation-defective homolog A). Our molecular analyses revealed that, in response to angiogenic signals, HIRA is induced in endothelial cells and mediates incorporation of lysine 56 acetylated histone H3.3 (H3acK56) at the chromatin domain of Vegfr1. HIRA-mediated incorporation of H3acK56 is a general mechanism associated with transcriptional induction of several angiogenic genes in endothelial cells. Depletion of HIRA inhibits H3acK56 incorporation and transcriptional induction of Vegfr1 and other angiogenic genes. Our functional analyses revealed that depletion of HIRA abrogates endothelial network formation on Matrigel and inhibits angiogenesis in an in vivo Matrigel plug assay. Furthermore, analysis in a laser-induced choroidal neovascularization model showed that depletion of HIRA significantly inhibits neovascularization. Our results for the first time decipher a histone chaperone (HIRA)-dependent molecular mechanism in endothelial gene regulation and indicate that histone chaperones could be new targets for angiogenesis therapy.
血管生成过程严重依赖于内皮细胞特异性转录机制。然而,调控染色质结构域的分子过程以及决定关键内皮基因转录的机制仍知之甚少。在此,我们报告在血管内皮细胞中,血管生成信号介导的 Vegfr1(血管内皮生长因子受体 1)转录诱导依赖于组蛋白伴侣 HIRA(细胞周期调控缺陷同源物 A)。我们的分子分析显示,在受到血管生成信号刺激时,HIRA 在血管内皮细胞中被诱导,介导组蛋白 H3.3(H3acK56)赖氨酸 56 乙酰化形式(H3acK56)在 Vegfr1 染色质结构域的掺入。HIRA 介导的 H3acK56 掺入是与内皮细胞中几种血管生成基因的转录诱导相关的一般机制。HIRA 的耗竭抑制了 Vegfr1 和其他血管生成基因的 H3acK56 掺入和转录诱导。我们的功能分析表明,HIRA 的耗竭阻断了 Matrigel 上的内皮细胞网络形成,并抑制了体内 Matrigel plugs 实验中的血管生成。此外,在激光诱导脉络膜新生血管模型中的分析表明,HIRA 的耗竭显著抑制了新生血管形成。我们的研究结果首次揭示了内皮细胞基因调控中组蛋白伴侣(HIRA)依赖性的分子机制,并表明组蛋白伴侣可能成为血管生成治疗的新靶点。