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组蛋白去乙酰化抑制剂可下调内皮型一氧化氮合酶的表达,并损害内皮细胞在血管舒张和血管生成中的功能。

Inhibitors of histone deacetylation downregulate the expression of endothelial nitric oxide synthase and compromise endothelial cell function in vasorelaxation and angiogenesis.

作者信息

Rössig Lothar, Li Huige, Fisslthaler Beate, Urbich Carmen, Fleming Ingrid, Förstermann Ulrich, Zeiher Andreas M, Dimmeler Stefanie

机构信息

Molecular Cardiology, Department of Internal Medicine IV, University of Frankfurt, Germany.

出版信息

Circ Res. 2002 Nov 1;91(9):837-44. doi: 10.1161/01.res.0000037983.07158.b1.

Abstract

The histone deacetylase (HDAC) inhibitor trichostatin A (TSA) inhibits hypoxia-stimulated angiogenesis. Endothelial nitric oxide synthase (eNOS)-derived NO is central to angiogenesis signaling in endothelial cells (ECs). We hypothesized that the HDAC-dependent regulation of angiogenesis may involve a modulatory effect on eNOS expression. The HDAC inhibitors TSA, butyric acid (BuA), and MS-275 time- and concentration-dependently suppressed eNOS protein levels to 41+/-2%, 46+/-12%, and 40+/-12% of control, respectively. In parallel, TSA and BuA also downregulated eNOS mRNA expression to 21+/-4% and 37+/-4% of control. TSA also attenuated the NO-dependent relaxation of porcine coronary arteries (P<0.0001, TSA 1 micromol/L) and prevented tube formation in a human angiogenesis assay. Although vascular endothelial growth factor substitution did not compensate for the inhibitory effect of TSA, exogenous NO reversed the inhibition of angiogenesis by TSA. To address the underlying signaling mechanism, we characterized the effect of TSA on eNOS gene transcription and mRNA half-life. Although TSA decreased both eNOS protein and mRNA levels, TSA paradoxically enhanced the activity of the eNOS promoter, and did not alter the eNOS transcription rate in nuclear run-on experiments, suggesting that TSA posttranscriptionally targets eNOS mRNA. These data indicate that HDAC-dependent mechanisms contribute to the regulation of eNOS expression in ECs.

摘要

组蛋白去乙酰化酶(HDAC)抑制剂曲古抑菌素A(TSA)可抑制缺氧刺激的血管生成。内皮型一氧化氮合酶(eNOS)衍生的NO在内皮细胞(ECs)的血管生成信号传导中起核心作用。我们推测HDAC依赖的血管生成调节可能涉及对eNOS表达的调节作用。HDAC抑制剂TSA、丁酸(BuA)和MS-275分别在时间和浓度上依赖性地将eNOS蛋白水平抑制至对照的41±2%、46±12%和40±12%。同时,TSA和BuA也将eNOS mRNA表达下调至对照的21±4%和37±4%。TSA还减弱了猪冠状动脉的NO依赖性舒张(P<0.0001,TSA 1 μmol/L),并在人血管生成试验中阻止了管腔形成。尽管血管内皮生长因子替代不能补偿TSA的抑制作用,但外源性NO可逆转TSA对血管生成的抑制。为了探讨潜在的信号机制,我们研究了TSA对eNOS基因转录和mRNA半衰期的影响。尽管TSA降低了eNOS蛋白和mRNA水平,但TSA反常地增强了eNOS启动子的活性,并且在核转录实验中未改变eNOS转录速率,提示TSA在转录后靶向eNOS mRNA。这些数据表明HDAC依赖的机制有助于ECs中eNOS表达的调节。

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