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Redox-mediated regulation of connexin proteins; focus on nitric oxide

机译:氧化还原介导的Connexin蛋白调控; 专注于一氧化氮

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摘要

Abstract Connexins are membrane proteins that form hemichannels and gap junction channels at the plasma membrane. Through these channels connexins participate in autocrine and paracrine intercellular communication. Connexin-based channels are tightly regulated by membrane potential, phosphorylation, pH, redox potential, and divalent cations, among others, and the imbalance of this regulation have been linked to many acquired and genetic diseases. Concerning the redox potential regulation, the nitric oxide (NO) has been described as a modulator of the hemichannels and gap junction channels properties. However, how NO regulates these channels is not well understood. In this mini-review, we summarize the current knowledge about the effects of redox potential focused in NO on the trafficking, formation and functional properties of hemichannels and gap junction channels. Graphical abstract Display Omitted
机译:摘要Connexins是膜蛋白,其在质膜处形成血管和间隙结通道。 通过这些渠道Connexins参与自分泌和旁静脉间通信。 基于Connexin的通道被膜电位,磷酸化,pH,氧化还原潜力和二价阳离子紧密地调节,等等,这种调节的不平衡已与许多获得的和遗传疾病有关。 关于氧化还原电位调节,已被描述为血管槽和间隙结通道特性的调节剂。 但是,如何不调节这些渠道并不充分了解。 在这个迷你审查中,我们总结了目前关于氧化还原潜力的影响的知识,其缺乏在血小箱和间隙连接通道的贩运,形成和功能性上。 省略了图形抽象显示

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