Fluid shear stress stimulates phosphorylation-dependent nuclear export of HDAC5 and mediates expression of KLF2 and eNOS

被引:152
|
作者
Wang, Weiye [1 ,2 ,3 ]
Ha, Chang Hoon [1 ,2 ]
Jhun, Bong Sook [1 ,2 ]
Wong, Chelsea [1 ,2 ]
Jain, Mukesh K. [4 ,5 ]
Jin, Zheng-Gen [1 ,2 ]
机构
[1] Univ Rochester, Aab Cardiovasc Res Inst, Sch Med & Dent, Rochester, NY 14642 USA
[2] Univ Rochester, Dept Med, Sch Med & Dent, Rochester, NY 14642 USA
[3] Univ Rochester, Dept Pharmacol & Physiol, Sch Med & Dent, Rochester, NY 14642 USA
[4] Case Western Reserve Univ, Sch Med, Case Cardiovasc Res Inst, Cleveland, OH USA
[5] Case Western Reserve Univ, Sch Med, Harrington McLaughlin Heart & Vasc Inst, Dept Med, Cleveland, OH USA
基金
美国国家卫生研究院;
关键词
ENDOTHELIAL NITRIC-OXIDE; MEF2 TRANSCRIPTION FACTOR; KRUPPEL-LIKE FACTOR; GENE-EXPRESSION; HEMODYNAMIC FORCES; ACTIVATION; FLOW; REGULATOR; INHIBITION; DEFICIENCY;
D O I
10.1182/blood-2009-05-224824
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Fluid shear stress generated by steady laminar blood flow protects vessels from atherosclerosis. Kruppel-like factor 2 (KLF2) and endothelial nitric oxide synthase (eNOS) are fluid shear stress responsive genes and key mediators in flow anti-inflammatory and antiatherosclerotic actions. However, the molecular mechanisms underlying flow induction of KLF2 and eNOS remain largely unknown. Here, we show a novel role of histone deacetylase 5 (HDAC5) in flow-mediated KLF2 and eNOS expression. We found for the first time that fluid shear stress stimulated HDAC5 phosphorylation and nuclear export in endothelial cells through a calcium/calmodulin-dependent pathway. Consequently, flow induced the dissociation of HDAC5 and myocyte enhancer factor-2 (MEF2) and enhanced MEF2 transcriptional activity, which leads to expression of KLF2 and eNOS. Adenoviral overexpression of a HDAC5 phosphorylation defective mutant (Ser259/Ser498 were replaced by Ala259/Ala498, HDAC5-S/A), which shows resistance to flow-induced nuclear export, suppressed flow-mediated MEF2 transcriptional activity and expression of KLF2 and eNOS. Importantly, HDAC5-S/A attenuated the flow-inhibitory effect on monocyte adhesion to endothelial cells. Taken together, our results reveal that phosphorylation-dependent derepression of HDAC5 mediates flow-induced KLF2 and eNOS expression as well as flow anti-inflammation, and suggest that HDAC5 could be a potential therapeutic target for the prevention of atherosclerosis. (Blood. 2010; 115(14): 2971-2979)
引用
收藏
页码:2971 / 2979
页数:9
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