首页> 外文期刊>European Journal of Pharmacology: An International Journal >Inhibition of activated ERK1/2 and JNKs improves vascular function in mouse aortae in the absence of nitric oxide.
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Inhibition of activated ERK1/2 and JNKs improves vascular function in mouse aortae in the absence of nitric oxide.

机译:在没有一氧化氮的情况下,抑制激活的ERK1 / 2和JNKs可改善小鼠主动脉的血管功能。

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Activation of mitogen-activated protein kinases (MAPKs) is important for vascular contraction. Decreased nitric oxide availability combined with activation of MAPKs contributes to an increase in vascular tone. In this study, we have determined the involvement of extracellular signal-regulated kinases1/2 (ERK1/2) and c-Jun N-terminal kinases (JNKs) in reactivity of mouse aortae in the absence of nitric oxide. Additionally, we have examined the contribution of these kinases to endothelium-dependent and prostaglandin F(2alpha) (PGF(2alpha))-induced contractions. Precontracted aortic rings were treated with MAPK/ERK kinase1/2 (MEK1/2) inhibitor U0126 or JNKs inhibitor SP600125 to determine reactivity after inhibition of nitric oxide synthase using organ bath chambers. Additionally, rings were pretreated with or without these inhibitors to assess PGF(2alpha)- and acetylcholine-induced, endothelium-dependent contractions. Specificity of the inhibitors was evaluated in each aortic ring by determining the phosphorylation levels of ERK1/2 and c-Jun using Bio-Plex phospho-protein detection kit. In the absence of nitric oxide both inhibitors caused relaxation, and the dilator response was increased by 2.5-fold using SP600125 in comparison with U0126. Transient endothelium-dependent contractions were blocked by U0126, whereas SP600125 strongly attenuated sustained PGF(2alpha)-induced contractions. U0126 inhibited only phosphorylation of ERK1/2, while SP600125 at higher concentrations not only inhibited phosphorylation of c-Jun but also ERK1/2 phosphorylation. In conclusion, the present study demonstrates that in aortae inhibition of activated ERK1/2 and JNKs mediates vascular relaxation, even in the absence of nitric oxide. Activation of ERK1/2 contributes predominantly to transient endothelium-dependent contractions while JNKs, possibly synergistically with ERK1/2, leads to sustained PGF(2alpha)-induced contractions.
机译:丝裂原激活的蛋白激酶(MAPK)的激活对于血管收缩很重要。一氧化氮利用率的下降与MAPKs的激活相结合,导致血管紧张度增加。在这项研究中,我们确定了在没有一氧化氮的情况下,小鼠主动脉反应性中涉及细胞外信号调节激酶1/2(ERK1 / 2)和c-Jun N末端激酶(JNKs)的参与。此外,我们已经检查了这些激酶对内皮依赖性和前列腺素F(2alpha)(PGF(2alpha))诱导的收缩的贡献。使用MAPK / ERK激酶1/2(MEK1 / 2)抑制剂U0126或JNKs抑制剂SP600125处理预收缩的主动脉环,以确定使用器官浴腔室抑制一氧化氮合酶后的反应性。此外,使用或不使用这些抑制剂对环进行预处理,以评估PGF(2α)和乙酰胆碱诱导的内皮依赖性收缩。通过使用Bio-Plex磷酸蛋白检测试剂盒确定ERK1 / 2和c-Jun的磷酸化水平,评估了每个主动脉环中抑制剂的特异性。在不存在一氧化氮的情况下,与U0126相比,使用SP600125时,两种抑制剂均会引起松弛,并且扩张剂响应提高了2.5倍。瞬时内皮依赖性收缩被U0126阻止,而SP600125强烈减弱了持续的PGF(2alpha)诱导的收缩。 U0126仅抑制ERK1 / 2的磷酸化,而更高浓度的SP600125不仅抑制c-Jun的磷酸化,而且还抑制ERK1 / 2的磷酸化。总之,本研究表明在主动脉中,即使没有一氧化氮,对活化的ERK1 / 2和JNKs的抑制也会介导血管舒张。 ERK1 / 2的激活主要促成短暂的内皮依赖性收缩,而JNKs(可能与ERK1 / 2协同作用)导致持续的PGF(2alpha)诱导的收缩。

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