首页> 美国卫生研究院文献>Antioxidants Redox Signaling >Hydrogen Sulfide Targets the Cys320/Cys529 Motif in Kv4.2 to Inhibit the Ito Potassium Channels in Cardiomyocytes and Regularizes Fatal Arrhythmia in Myocardial Infarction
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Hydrogen Sulfide Targets the Cys320/Cys529 Motif in Kv4.2 to Inhibit the Ito Potassium Channels in Cardiomyocytes and Regularizes Fatal Arrhythmia in Myocardial Infarction

机译:硫化氢靶向Kv4.2中的Cys320 / Cys529母体以抑制心肌细胞中的Ito钾离子通道并调节心肌梗死中的致命性心律失常

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摘要

>Aims: The mechanisms underlying numerous biological roles of hydrogen sulfide (H2S) remain largely unknown. We have previously reported an inhibitory role of H2S in the L-type calcium channels in cardiomyocytes. This prompts us to examine the mechanisms underlying the potential regulation of H2S on the ion channels. >Results: H2S showed a novel inhibitory effect on Ito potassium channels, and this effect was blocked by mutation at the Cys320 and/or Cys529 residues of the Kv4.2 subunit. H2S broke the disulfide bridge between a pair of oxidized cysteine residues; however, it did not modify single cysteine residues. H2S extended action potential duration in epicardial myocytes and regularized fatal arrhythmia in a rat model of myocardial infarction. H2S treatment significantly increased survival by ∼1.4-fold in the critical 2-h time window after myocardial infarction with a protection against ventricular premature beats and fatal arrhythmia. However, H2S did not change the function of other ion channels, including IK1 and INa. >Innovation and Conclusion: H2S targets the Cys320/Cys529 motif in Kv4.2 to regulate the Ito potassium channels. H2S also shows a potent regularizing effect against fatal arrhythmia in a rat model of myocardial infarction. The study provides the first piece of evidence for the role of H2S in regulating Ito potassium channels and also the specific motif in an ion channel labile for H2S regulation. Antioxid. Redox Signal. 23, 129–147.
机译:>目的:硫化氢(H2S)的多种生物学作用的潜在机制仍然未知。我们先前已经报道了H2S在心肌细胞L型钙通道中的抑制作用。这促使我们研究离子通道上H2S潜在调节的潜在机制。 >结果:H2S对Ito钾离子通道显示出新的抑制作用,并且该作用被Kv4.2亚基的Cys320和/或Cys529残基突变所阻断。 H2S打破了一对氧化的半胱氨酸残基之间的二硫键;然而,它没有修饰单个半胱氨酸残基。在心肌梗死的大鼠模型中,H2S延长了心外膜心肌细胞中动作电位的持续时间,并导致致命性心律失常。 H2S治疗可在心肌梗死后的2小时临界时间内显着提高存活率约1.4倍,并能预防室性早搏和致命性心律失常。但是,H2S并未改变其他离子通道(包括IK1和INa)的功能。 >创新和结论: H2S靶向Kv4.2中的Cys320 / Cys529基序,以调节Ito钾离子通道。在心肌梗死的大鼠模型中,H2S还显示出对致命性心律失常的有效调节作用。该研究为H2S在调节Ito钾离子通道中的作用以及在离子通道中对H 2 S调节不稳定的特定基序提供了第一条证据。抗氧化。氧化还原信号。 23,129–147。

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