首页> 外文期刊>The Journal of biological chemistry >Binding Site and Inhibitory Mechanism of the Mambalgin-2 Pain-relieving Peptide on Acid-sensing Ion Channel 1a
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Binding Site and Inhibitory Mechanism of the Mambalgin-2 Pain-relieving Peptide on Acid-sensing Ion Channel 1a

机译:胚芽粘接离子通道1A上颗粒骨髓-2疼痛缓解肽的结合位点及抑制机制

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Acid-sensing ion channels (ASICs) are neuronal proton-gated cation channels associated with nociception, fear, depression, seizure, and neuronal degeneration, suggesting roles in pain and neurological and psychiatric disorders. We have recently discovered black mamba venom peptides called mambalgin-1 and mambalgin-2, which are new three-finger toxins that specifically inhibit with the same pharmacological profile ASIC channels to exert strong analgesic effects in vivo. We now combined bioinformatics and functional approaches to uncover the molecular mechanism of channel inhibition by the mambalgin-2 pain-relieving peptide. Mambalgin-2 binds mainly in a region of ASIC1a involving the upper part of the thumb domain (residues Asp-349 and Phe-350), the palm domain of an adjacent subunit, and the β-ball domain (residues Arg-190, Asp-258, and Gln-259). This region overlaps with the acidic pocket (pH sensor) of the channel. The peptide exerts both stimulatory and inhibitory effects on ASIC1a, and we propose a model where mambalgin-2 traps the channel in a closed conformation by precluding the conformational change of the palm and β-ball domains that follows proton activation. These data help to understand inhibition by mambalgins and provide clues for the development of new optimized blockers of ASIC channels.
机译:酸感测离子通道(ASIC)是与伤害,恐惧,抑郁,癫痫发作和神经元变性相关的神经元质子门通道,表明疼痛和神经和精神病疾病的作用。我们最近发现了名为Mambalgin-1和Mambalgin-2的黑曼巴毒性肽,其是新的三指毒素,其特异性地抑制相同的药理学型材ASIC通道以在体内发挥强大的镇痛作用。我们现在组合生物信息学和功能性方法,以发现蒙曼大尔菌-2疼痛缓解肽的分子机制抑制。 Mambalgin-2主要结合ASIC1a的区域,涉及拇指域(残基ASP-349和PHE-350)的上部,相邻亚基的棕榈域和β-球结构域(残留物arg-190,ASP -258和GLN-259)。该区域与通道的酸性口袋(pH传感器)重叠。肽对ASIC1A施加刺激和抑制作用,并且我们提出了一种模型,其中Mambalg-2通过排除遵循质子活化的棕榈和β-球形域的构象变化来捕获通道的模型。这些数据有助于了解Mambalgins的抑制,并提供用于开发ASIC通道的新优化阻滞剂的线索。

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