首页> 外文期刊>Blood: The Journal of the American Society of Hematology >NF-kappaB balances vascular regression and angiogenesis via chromatin remodeling and NFAT displacement.
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NF-kappaB balances vascular regression and angiogenesis via chromatin remodeling and NFAT displacement.

机译:NF-κB通过染色质重塑和NFAT位移平衡血管回归和血管生成。

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摘要

Extracellular factors control the angiogenic switch in endothelial cells (ECs) via competing survival and apoptotic pathways. Previously, we showed that proangiogenic and antiangiogenic factors target the same signaling molecules, which thereby become pivots of angiogenic balance. Here we show that in remodeling endothelium (ECs and EC precursors) natural angiogenic inhibitors enhance nuclear factor-kappaB (NF-kappaB) DNA binding, which is critical for antiangiogenesis, and that blocking the NF-kappaB pathway abolishes multiple antiangiogenic events in vitro and in vivo. NF-kappaB induction by antiangiogenic molecules has a dual effect on transcription. NF-kappaB acts as an activator of proapoptotic FasL and as a repressor of prosurvival cFLIP. On the FasL promoter, NF-kappaB increases the recruitment of HAT p300 and acetylated histones H3 and H4. Conversely, on cFLIP promoter, NF-kappaB increases histone deacetylase 1 (HDAC1), decreases p300 and histone acetylation, and reduces the recruitment of NFAT, a transcription factor critical for cFLIP expression. Finally, we found a biphasic effect, when HDAC inhibitors (HDACi) were used to test the dependence of pigment epithelial-derived factor activity on histone acetylation. The cooperative effect seen at low doses switches to antagonistic as the concentrations increase. Our study defines an interactive transcriptional network underlying angiogenic balance and points to HDACi as tools to manipulate the angiogenic switch.
机译:细胞外因子通过竞争存活和凋亡途径控制内皮细胞(ECS)中的血管生成开关。以前,我们表明常规和抗血管生成因子靶向相同的信号分子,从而成为血管生成平衡的枢转。在这里,我们表明,在重塑内皮(ECS和EC前体)中,天然血管生成抑制剂增强核因子-κB(NF-κB)DNA结合,这对抗脑发生至关重要,并且阻断NF-κB途径在体外废除多个抗脑发生事件体内。抗血管生成分子的NF-κBab诱导对转录具有双重影响。 NF-Kappab充当Proapoftotic Fasl的活化剂,作为灭吸性Clip的阻遏物。在FasL启动子上,NF-Kappab增加了帽P300和乙酰化组蛋白H3和H4的募集。相反,在CFLIP启动子上,NF-κB增加组蛋白脱乙酰酶1(HDAC1),降低P300和组蛋白乙酰化,并减少NFAT的募集,对CFLIP表达至关重要的转录因子。最后,当使用HDAC抑制剂(HDACI)测试颜料上皮衍生因子活性对组酮乙酰化的依赖性时,我们发现了双色效果。低剂量后面看到的合作效果随着浓度的增加而拮抗。我们的研究定义了血管生成平衡的交互式转录网络,并指向HDACI作为操纵血管生成开关的工具。

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