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miR-1 is increased in pulmonary hypertension and downregulates Kv1.5 channels in rat pulmonary arteries

机译:miR-1在肺动脉高压上增加,并在大鼠肺动脉中下调kV1.5通道

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Impairment of the voltage-dependent potassium channel (Kv) plays a central role in the development of cardiovascular diseases, including pulmonary arterial hypertension (PAH). MicroRNAs are non-coding RNAs that regulate gene expression by binding to the 3-untranslated region region of specific mRNAs. The present study aimed to analyse the effects of miR-1 on Kv channel function in pulmonary arteries (PA). Kv channel activity was studied in PA from healthy animals transfected with miR-1 or scrambled-miR. Kv currents were studied using the whole-cell configuration of the patch clamp technique. The characterization of the Kv1.5 currents was performed with the selective inhibitor DPO-1. miR-1 expression was increased and Kv1.5 channels were decreased in lungs from a rat model of PAH induced by hypoxia and Su5416. miR-1 transfection increased cell capacitance, reduced Kv1.5 currents and induced membrane depolarization in isolated pulmonary artery smooth muscle cells. A luciferase reporter assay indicated that KCNA5, which encodes Kv1.5 channels, is a direct target gene of miR-1. Incubation of PA with Su5416 and hypoxia (3% O-2) increased miR-1 and induced a decline in Kv1.5 currents, which was prevented by antagomiR-1. In conclusion, these data indicate that miR-1 induces pulmonary artery smooth muscle cell hypertrophy and reduces the activity and expression of Kv channels, suggesting a pathophysiological role in PAH.
机译:电压依赖性钾通道(KV)的损害在心血管疾病的发展中起着核心作用,包括肺动脉高血压(PAH)。 MicroRNA是非编码RNA,其通过与特异性mRNA的3-未翻译区域区域结合来调节基因表达。本研究旨在分析miR-1对肺动脉肺动脉(PA)kV通道功能的影响。在PA从用miR-1或扰乱 - mir转染的健康动物的Pa中研究了kV频道活性。使用贴片技术的全电池配置研究了KV电流。用选择性抑制剂DPO-1进行KV1.5电流的表征。 MiR-1表达增加,缺氧和SU5416诱导的PAH的大鼠模型中肺部肺部升高,kv1.5通道降低。 miR-1转染增加电池电容,降低kV1.5电流和诱导膜中肺动脉平滑肌细胞中的诱导膜去极化。荧光素酶报告结果表明,编码KV1.5通道的KCNA5是miR-1的直接靶基因。用SU5416孵育PA和缺氧(3%O-2)增加miR-1,并诱导kv1.5电流下降,由intagomir-1预防。总之,这些数据表明miR-1诱导肺动脉平滑肌细胞肥大并减少kV频道的活性和表达,表明PAH中的病理生理作用。

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