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首页> 外文期刊>Pharmacological reviews >The Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels: from Biophysics to Pharmacology of a Unique Family of Ion Channels
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The Hyperpolarization-Activated Cyclic Nucleotide-Gated Channels: from Biophysics to Pharmacology of a Unique Family of Ion Channels

机译:超极化激活的循环核苷酸门控通道:从生物物理学到独特的离子通道的药理学

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摘要

Hyperpolarization-activated, cyclic nucleotide-gated (HCN) channels are important members of the voltage-gated pore loop channels family. They show unique features: they open at hyperpolarizing potential, carry a mixed Na/K current, and are regulated by cyclic nucleotides. Four different isoforms have been cloned (HCN1-4) that can assemble to form homo-or heterotetramers, characterized by different biophysical properties. These proteins are widely distributed throughout the body and involved in different physiologic processes, the most important being the generation of spontaneous electrical activity in the heart and the regulation of synaptic transmission in the brain. Their role in heart rate, neuronal pacemaking, dendritic integration, learning and memory, and visual and pain perceptions has been extensively studied; these channels have been found also in some peripheral tissues, where their functions still need to be fully elucidated. Genetic defects and altered expression of HCN channels are linked to several pathologies, which makes these proteins attractive targets for translational research; at the moment only one drug (ivabradine), which specifically blocks the hyperpolarization-activated current, is clinically available. This review discusses current knowledge about HCN channels, starting from their biophysical properties, origin, and developmental features, to (patho) physiologic role in different tissues and pharmacological modulation, ending with their present and future relevance as drug targets.
机译:超极化激活的循环核苷酸门控(HCN)通道是电压门控孔回路通道系列的重要成员。它们显示出独特的特征:它们在超极化潜力下打开,携带混合的Na / k电流,并通过循环核苷酸调节。已经克隆了四种不同的同种型(HCN1-4),其可以组装以形成同源物或异质蛋白,其特征在于不同的生物物理性质。这些蛋白质广泛分布在整个身体上并参与不同的生理过程,最重要的是心脏中的自发电信活性以及大脑中突触传递的调节。它们在心率,神经头颅,树突上的一体化,学习和记忆中的作用,以及视觉和疼痛感知得到了广泛研究;这些通道也已发现在一些外周组织中,其中仍需要完全阐明其功能。 HCN通道的遗传缺陷和改变的HCN通道表达与几种病理相关,这使得这些蛋白质有吸引力的转化研究目标;目前只有一种药物(ivabradine),该药物(ivabradine)特别阻断激活激活的电流,在临床上可用。本综述讨论了目前关于HCN渠道的知识,从其生物物理性质,起源和发育特征,(Patho)在不同组织和药理学调制中的生理作用,以其存在的目前和未来的相关性作为药物靶标。

著录项

  • 来源
    《Pharmacological reviews》 |2017年第4期|共42页
  • 作者单位

    Univ Florence Dept Neurosci Psychol Drug Res &

    Child Hlth Florence Italy;

    Univ Florence Dept Neurosci Psychol Drug Res &

    Child Hlth Florence Italy;

    Univ Florence Dept Neurosci Psychol Drug Res &

    Child Hlth Florence Italy;

    Univ Florence Dept Neurosci Psychol Drug Res &

    Child Hlth Florence Italy;

    Univ Florence Dept Neurosci Psychol Drug Res &

    Child Hlth Florence Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药理学;
  • 关键词

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