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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >MicroRNA-210 Targets Ten-Eleven Translocation Methylcytosine Dioxygenase 1 and Suppresses Pregnancy-Mediated Adaptation of Large Conductance Ca2+-Activated K+ Channel Expression and Function in Ovine Uterine Arteries
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MicroRNA-210 Targets Ten-Eleven Translocation Methylcytosine Dioxygenase 1 and Suppresses Pregnancy-Mediated Adaptation of Large Conductance Ca2+-Activated K+ Channel Expression and Function in Ovine Uterine Arteries

机译:microRNA-210靶向十一十一易位甲基胞嘧啶二恶英酶1,抑制妊娠介导的大导电Ca2 +活化的K +通道表达和在绵羊子宫动脉中的功能

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Gestational hypoxia inhibits large conductance Ca2+-activated K+ (BKCa) channel expression and function in uterine arterial adaptation to pregnancy. Given the findings that microRNA-210 (miR-210) is increased in hypoxia during gestation and preeclampsia, the present study sought to investigate the role of miR-210 in the regulation of BKCa channel adaptation in the uterine artery. Gestational hypoxia significantly increased uterine vascular resistance and blood pressure in pregnant sheep and upregulated miR-210 in uterine arteries. MiR-210 bound to ovine ten-eleven translocation methylcytosine dioxygenase 1 mRNA 3' untranslated region and decreased ten-eleven translocation methylcytosine dioxygenase 1 mRNA and protein abundance in uterine arteries of pregnant sheep, as well as abrogated steroid hormone-induced upregulation of ten-eleven translocation methylcytosine dioxygenase 1 expression in uterine arteries of nonpregnant animals. In accordance, miR-210 blocked pregnancy-and steroid hormone-induced upregulation of BKCa channel beta(1) subunit expression in uterine arteries. Functionally, miR-210 suppressed BKCa channel current density in uterine arterial myocytes of pregnant sheep and inhibited steroid hormone-induced increases in BKCa channel currents in uterine arteries of nonpregnant animals. Blockade of endogenous miR-210 inhibited hypoxia-induced suppression of BKCa channel activity. In addition, miR-210 decreased BKCa channel-mediated relaxations and increased pressure-dependent myogenic tone of uterine arteries. Together, the results demonstrate that miR-210 plays an important role in the downregulation of ten-eleven translocation methylcytosine dioxygenase 1 and repression of BKCa channel function in uterine arteries, revealing a novel mechanism of epigenetic regulation in the maladaptation of uterine hemodynamics in gestational hypoxia and preeclampsia.
机译:妊娠期缺氧抑制大次电导Ca2 +活化的K +(BKCA)通道表达和妊娠期妊娠的功能。鉴于MicroRNA-210(miR-210)在妊娠和预胰蛋白酶期间缺氧中增加的结果,本研究试图研究MIR-210在子宫动脉中BKCA通道适应调节中的作用。妊娠期缺氧显着提高子宫血管抗性和孕羊血压和子宫动脉的上调miR-210。 miR-210与绵羊十一十一易位甲基胞嘧啶二恶英酶1 mRNA 3'未翻译区域并降低了怀孕羊的子宫动脉的10-19级甲基胞嘧啶二恶英酶1 mRNA和蛋白质丰富,以及废除的类固醇激素诱导的十个上调十六译甲基胞嘧啶二恶英酶1非妊娠动物子宫动脉的表达。根据,MiR-210阻断妊娠和类固醇激素诱导的子宫动脉中BKCA通道β(1)亚基表达的上调。在功能上,MIR-210抑制了孕羊的子宫动脉肌细胞中的BKCA通道电流密度,并抑制非妊娠动物的子宫动脉BKCA通道电流中的类固醇激素诱导的增加。阻断内源性miR-210抑制了缺氧诱导的BKCA通道活动的抑制。此外,MIR-210降低了BKCA通道介导的弛豫和增加子宫动脉的依赖性依赖性肌原源性。结果表明,MIR-210在子宫动脉中的十一易位甲基胞嘧啶二恶英酶1的下调和BKCA通道功能的下调中起重要作用,揭示了妊娠期缺氧中子宫血流动力学的介性调节的新机制和预贷方。

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