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首页> 外文期刊>Circulation research: a journal of the American Heart Association >Epigenetic regulation of endothelial lineage committed genes in pro-angiogenic hematopoietic and endothelial progenitor cells.
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Epigenetic regulation of endothelial lineage committed genes in pro-angiogenic hematopoietic and endothelial progenitor cells.

机译:在促血管生成的造血和内皮祖细胞中对内皮细胞谱系定型基因的表观遗传调控。

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摘要

Rationale: Proangiogenic hematopoietic and endothelial progenitor cells (EPCs) contribute to postnatal neovascularization, but the mechanisms regulating differentiation to the endothelial lineage are unclear. Objective: To elucidate the epigenetic control of endothelial gene expression in proangiogenic cells and EPCs. Methods and Results: Here we demonstrate that the endothelial nitric oxide synthase (eNOS) promoter is epigenetically silenced in proangiogenic cells (early EPCs), CD34(+) cells, and mesoangioblasts by DNA methylation and prominent repressive histone H3K27me3 marks. In order to reverse epigenetic silencing to facilitate endothelial commitment, we used 3-deazaneplanocin A, which inhibits the histone methyltransferase enhancer of zest homolog 2 and, thereby, reduces H3K27me3. 3-Deazaneplanocin A was not sufficient to increase eNOS expression, but the combination of 3-deazaneplanocin A and the histone deacetylase inhibitor Trichostatin A augmented eNOS expression, indicating that the concomitant inhibition of silencing histone modification and enhancement of activating histone modification facilitates eNOS expression. In ischemic tissue, hypoxia plays a role in recruiting progenitor cells. Therefore, we examined the effect of hypoxia on epigenetic modifications. Hypoxia modulated the balance of repressive to active histone marks and increased eNOS mRNA expression. The reduction of repressive H3K27me3 was associated with an increase of the histone demethylase Jmjd3. Silencing of Jmjd3 induced apoptosis and senescence in proangiogenic cells and inhibited hypoxia-mediated up-regulation of eNOS expression in mesoangioblasts. Conclusions: These findings provide evidence that histone modifications epigenetically control the eNOS promoter in proangiogenic cells.
机译:理由:促血管生成的造血和内皮祖细胞(EPC)有助于出生后的新生血管形成,但调节向内皮细胞谱系分化的机制尚不清楚。目的:阐明前血管生成细胞和EPCs中内皮基因表达的表观遗传控制。方法和结果:在这里,我们证明了内皮一氧化氮合酶(eNOS)启动子通过DNA甲基化和突出的阻遏组蛋白H3K27me3标记在促血管生成细胞(早期EPC),CD34(+)细胞和中成血管细胞中被表观遗传沉默。为了逆转表观遗传沉默以促进内皮功能,我们使用了3-deazaneplanocin A,它抑制了热情同源物2的组蛋白甲基转移酶增强子,从而降低了H3K27me3。 3-Deazaneplanocin A不足以增加eNOS的表达,但3-deazaneplanocin A和组蛋白脱乙酰基酶抑制剂Trichostatin A的组合可增强eNOS的表达,表明同时抑制沉默组蛋白修饰和增强激活组蛋白修饰可促进eNOS表达。在缺血组织中,缺氧在募集祖细胞中起作用。因此,我们检查了缺氧对表观遗传修饰的影响。缺氧调节了活性组蛋白标记的抑制和eNOS mRNA表达的增加。抑制性H3K27me3的减少与组蛋白脱甲基酶Jmjd3的增加有关。 Jmjd3沉默诱导促血管生成细胞凋亡和衰老,并抑制缺氧介导的中成血管细胞中eNOS表达的上调。结论:这些发现为组蛋白修饰表观遗传控制原血管生成细胞中的eNOS启动子提供了证据。

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