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内皮型一氧化氮合酶产生一氧化氮和超氧化物:热休克蛋白90的调节作用

Nitric oxide and superoxide generation from endothelial NOS: modulation by HSP90.

作者信息

Sud Neetu, Sharma Shruti, Wiseman Dean A, Harmon Cynthia, Kumar Sanjiv, Venema Richard C, Fineman Jeffrey R, Black Stephen M

机构信息

Vascular Biology Center, Medical College of Georgia, Augusta, GA 30912, USA.

出版信息

Am J Physiol Lung Cell Mol Physiol. 2007 Dec;293(6):L1444-53. doi: 10.1152/ajplung.00175.2007. Epub 2007 Sep 7.

Abstract

Previously, we have shown that pulmonary arterial endothelial cells (PAECs) isolated from fetal lambs produce significant levels of nitric oxide (NO) but minimal superoxide upon stimulation, whereas PAECs isolated from 4-wk-old lambs produce significant amounts of both NO and superoxide. These data indicated that a certain degree of uncoupling of endothelial NO synthase (eNOS) occurs in PAECs during postnatal development. In this study, we sought to extend these studies by investigating the potential role of heat shock protein 90 (HSP90) in eNOS coupling. Western blot analyses revealed higher HSP90 expression in PAECs isolated from fetal compared with 4-wk-old lambs, whereas the analysis of recombinant human eNOS activation in vitro in the presence of HSP90 indicated that HSP90 significantly augmented NO production while inhibiting superoxide generation from eNOS. To further investigate whether HSP90 could be involved in uncoupling of eNOS in PAECs isolated from 4-wk-old lambs, we utilized an adenovirus to overexpress HSP90. We found that overexpression of HSP90 significantly increased the shear-stimulated association of HSP90 with eNOS and led to significant increases in NO production and reduced NOS-dependent superoxide generation. Conversely, the exposure of PAECs isolated from fetal lambs to the HSP90 inhibitor radicicol led to significant decreases in eNOS-HSP90 interactions, decreased shear-stimulated NO generation, and increased NOS-dependent superoxide production indicative of eNOS uncoupling. Finally, we examined eNOS-HSP90 interactions in our lamb model of pulmonary hypertension associated with increased pulmonary blood flow (shunt). Our data indicate that HSP90-eNOS interactions were decreased in shunt lambs and that this was associated with decreased NO generation and an increase in eNOS-dependent generation of superoxide. Together, our data support a significant role for HSP90 in promoting NO generation and inhibiting superoxide generation by eNOS and indicate that the disruption of this interaction may be involved in the endothelial dysfunction associated with pulmonary hypertension.

摘要

此前,我们已经表明,从胎羊分离的肺动脉内皮细胞(PAECs)在受到刺激时会产生大量的一氧化氮(NO),但超氧化物产生极少,而从4周龄羔羊分离的PAECs则会产生大量的NO和超氧化物。这些数据表明,出生后发育过程中,PAECs中内皮型一氧化氮合酶(eNOS)会发生一定程度的解偶联。在本研究中,我们试图通过研究热休克蛋白90(HSP90)在eNOS偶联中的潜在作用来扩展这些研究。蛋白质印迹分析显示,与4周龄羔羊相比,从胎羊分离的PAECs中HSP90表达更高,而在有HSP90存在的情况下对重组人eNOS进行体外激活分析表明,HSP90显著增加NO生成,同时抑制eNOS产生超氧化物。为了进一步研究HSP90是否参与从4周龄羔羊分离的PAECs中eNOS的解偶联,我们利用腺病毒使HSP90过表达。我们发现,HSP90过表达显著增加了剪切力刺激下HSP90与eNOS的结合,并导致NO生成显著增加,同时减少了一氧化氮合酶(NOS)依赖性超氧化物的产生。相反,将从胎羊分离的PAECs暴露于HSP90抑制剂雷迪西醇会导致eNOS与HSP90的相互作用显著降低,剪切力刺激的NO生成减少,以及NOS依赖性超氧化物生成增加,这表明eNOS发生了解偶联。最后,我们在与肺血流量增加(分流)相关的肺动脉高压羔羊模型中检测了eNOS与HSP90的相互作用。我们的数据表明,分流羔羊中HSP90与eNOS的相互作用降低,这与NO生成减少以及eNOS依赖性超氧化物生成增加有关。总之,我们的数据支持HSP90在促进NO生成和抑制eNOS产生超氧化物方面发挥重要作用,并表明这种相互作用的破坏可能与肺动脉高压相关的内皮功能障碍有关。

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