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白细胞介素-6 抑制内皮型一氧化氮合酶的激活,并增加人血管内皮细胞中内皮型一氧化氮合酶与稳定化 caveolin-1 的结合。

Interleukin-6 inhibits endothelial nitric oxide synthase activation and increases endothelial nitric oxide synthase binding to stabilized caveolin-1 in human vascular endothelial cells.

机构信息

Section of Cardiology, Department of Medicine, Chang Gung Memorial Hospital at Keelung, Keelung, Taiwan.

出版信息

J Hypertens. 2010 May;28(5):940-51. doi: 10.1097/HJH.0b013e32833992ef.

Abstract

OBJECTIVE

We hypothesized a possible mechanism for atherosclerosis in which interleukin-6 (IL-6) might affect the endothelial nitric oxide synthase (eNOS)-caveolin-1 interaction and result in decreased nitric oxide bioavailability in the setting of low-grade inflammation.

METHODS

Because eNOS and caveolin-1 are crucial for vascular tone control, we studied the effects of IL-6 on the expression and activation of eNOS and caveolin-1 in human vascular endothelial cells.

RESULTS

IL-6 inhibited the phosphorylation of eNOS at Ser1177 and the bradykinin-stimulated nitric oxide production; however, eNOS protein expression was not changed. In addition, IL-6 inhibited bradykinin-stimulated Akt phosphorylation at Ser473 and Thr 308 without affecting the Akt protein expression. IL-6 did not alter the mRNA level of caveolin-1; however, the caveolin-1 protein level was significantly increased dose-dependently. The binding of eNOS and caveolin-1 in endothelial cells, as demonstrated by coimmunoprecipitation assay, was increased by IL-6 treatment. IL-6 treatment was found to stabilize caveolin-1 protein and its half-life was estimated to prolong from 7.5 h to longer than 12 h. Furthermore, treatment with PD98059 and short interference RNA of extracellular signal-regulated kinase gene reversed the effects of IL-6 on eNOS and caveolin-1.

CONCLUSION

In addition to decreasing Akt phosphorylation, the results of this study demonstrate, for the first time, the molecular mechanism underlying the effect of IL-6 to decrease the nitric oxide bioavailability by increasing the half-life and, therefore, the protein levels of caveolin-1. The increased caveolin-1 proteins bind more eNOS and consequently decrease eNOS activation by reducing the Ser1177 phosphorylation.

摘要

目的

我们假设了一种动脉粥样硬化的可能机制,即白细胞介素-6(IL-6)可能通过影响内皮型一氧化氮合酶(eNOS)-小窝蛋白-1 的相互作用,导致在低度炎症的情况下一氧化氮生物利用度降低。

方法

由于 eNOS 和小窝蛋白-1 对血管张力控制至关重要,我们研究了 IL-6 对人血管内皮细胞中 eNOS 和小窝蛋白-1 的表达和激活的影响。

结果

IL-6 抑制了 eNOS 在 Ser1177 的磷酸化和缓激肽刺激的一氧化氮产生;然而,eNOS 蛋白表达没有改变。此外,IL-6 抑制了缓激肽刺激的 Akt 在 Ser473 和 Thr308 的磷酸化,而不影响 Akt 蛋白表达。IL-6 不改变小窝蛋白-1 的 mRNA 水平;然而,小窝蛋白-1 蛋白水平显著增加,呈剂量依赖性。通过共免疫沉淀试验证明,内皮细胞中 eNOS 和小窝蛋白-1 的结合增加。IL-6 处理发现稳定了小窝蛋白-1 蛋白,其半衰期估计从 7.5 小时延长至 12 小时以上。此外,用 PD98059 和细胞外信号调节激酶基因的短发夹 RNA 处理可逆转 IL-6 对 eNOS 和小窝蛋白-1 的作用。

结论

除了降低 Akt 磷酸化外,本研究结果首次证明了 IL-6 降低一氧化氮生物利用度的分子机制,通过增加小窝蛋白-1 的半衰期和因此蛋白水平。增加的小窝蛋白-1 蛋白与更多的 eNOS 结合,从而通过减少 Ser1177 磷酸化来降低 eNOS 的激活。

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