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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Protective role of ACE2-Ang-(1-7)-Mas in myocardial fibrosis by downregulating K(Ca)3.1 channel via ERK1/2 pathway
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Protective role of ACE2-Ang-(1-7)-Mas in myocardial fibrosis by downregulating K(Ca)3.1 channel via ERK1/2 pathway

机译:ACE2-Ang-(1-7)-MAS通过下调K(CA)3.1通道通过ERK1 / 2通道的抗心肌纤维化的保护作用

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摘要

The intermediate-conductance Ca2+-activated K+ (K(Ca)3.1) channel plays a vital role in myocardial fibrosis induced by angiotensin (Ang) II. However, as the antagonists of Ang II, the effect of angiotensin-converting enzyme 2 (ACE2)-angiotensin-(1-7)-Mas axis on K(Ca)3.1 channel during myocardial fibrosis remains unknown. This study was designed to explore the function of K(Ca)3.1 channel in the cardioprotective role of ACE2-Ang-(1-7)-Mas. Wild-type (WT) mice, hACE2 transgenicmice (Tg), and ACE2 deficiency mice (ACE2(-/-)) were administrated with Ang II by osmotic mini-pumps. As the activator of ACE2, diminazene aceturate (DIZE) inhibited increase of blood pressure, collagen deposition, and K(Ca)3.1 protein expression in myocardium of WT mice induced by Ang II. In Tg and ACE2(-/-) mice, besides the elevation of blood pressure, Ang II induced transformation of cardiac fibroblast into myofibroblast and resulted in augmentation of hydroxyproline concentration and collagen deposition, as well as K(Ca)3.1 protein expression, but the changes in ACE2(-/-) mice were more obvious than those in Tg mice. Mas antagonist A779 reduced blood pressure, myocardium fibrosis, and myocardium K(Ca)3.1 protein expression by Ang II in Tg mice, but activation of K(Ca)3.1 with SKA-31 in Tg mice promoted the pro-fibrogenic effects of Ang II. Respectively, in ACE2(-/-) mice, TRAM-34, the K(Ca)3.1 blocker, and Ang-(1-7) inhibited increase of blood pressure, collagen deposition, and K(Ca)3.1 protein expression by Ang II. Moreover, DIZE and Ang-(1-7) depressed p-ERK1/2/t-ERK increases by Ang II in WT mice, and after blockage of ERK1/2 pathway with PD98059, the K(Ca)3.1 protein expression was reduced in WT mice. In conclusion, the present study demonstrates that ACE2-Ang-(1-7)-Mas protects the myocardium from hypertension-induced injury, which is related to its inhibiting effect on K(Ca)3.1 channels through ERK1/2 pathway. Our results reveal that K(Ca)3.1 channel is likely to be a critical target on the ACE2-Ang-(1-7)-Mas axis for its protective role in myocardial fibrosis and changes of K(Ca)3.1 induced by homeostasis of ACE-Ang II-AT1 axis and ACE2-Ang-(1-7)-Mas axis may be a new therapeutic target in myocardial fibrosis.
机译:中间导电CA2 +活化的K +(K(CA)3.1)信道在血管紧张素(Ang)II诱导的心肌纤维化中起着至关重要的作用。然而,作为Ang II的拮抗剂,血管紧张素转换酶2(ACE2) - angiotensin-(1-7)-MAS轴的作用在心肌纤维化期间K(CA)3.1通道仍然未知。本研究旨在探讨K(CA)3.1通道在ACE2-Ang-(1-7)-MAS的心脏保护作用中的功能。野生型(WT)小鼠,HECE2转基因(TG)和ACE2缺乏小鼠(ACE2( - / - )通过渗透迷你泵给予ANG II。作为ACE2的活化剂,DiMinazene醋酸乙烯(Dize)抑制血压的增加,胶原沉积和k(Ca)3.1蛋白表达在由Ang II诱导的WT小鼠的心肌中。在Tg和Ace2( - / - )小鼠中,除了血压的升高,Ang II诱导心脏成纤维细胞转化到肌纤维细胞中,导致羟脯氨酸浓度和胶原沉积的增强,以及K(CA)3.1蛋白表达,但是Ace2( - / - )小鼠的变化比TG小鼠更明显。 MAS拮抗剂A779降低血压,心肌纤维化和心肌K(CA)3.1蛋白表达在TG小鼠中,但在TG小鼠中,SKA-31激活K(CA)3.1促进了Ang II的促纤维原作用。分别在ACE2( - / - )小鼠中,TRAM-34,K(CA)3.1阻断剂和Ang-(1-7)抑制血压,胶原沉积和K(CA)3.1蛋白表达的增加II。此外,DIZ和Ang-(1-7)抑制的P-ERK1 / 2 / T-ERK在WT小鼠中增加,并且在用PD98059堵塞ERK1 / 2途径后,k(CA)3.1蛋白表达减少在wt小鼠。总之,本研究表明,ACE2-Ang-(1-7)-MAS -MA保护心肌免受高血压诱导的损伤,这与其通过ERK1 / 2途径对K(CA)3.1通道的抑制作用有关。我们的结果表明,K(CA)3.1频道可能是ACE2-ANG-(1-7)-MAS轴上的临界目标,用于其在心肌纤维化中的保护作用和谐波诱导的K(CA)3.1的变化ACE-Ang II-AT1轴和ACE2-ANG-(1-7)-MAS轴可以是心肌纤维化的新治疗靶标。

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