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Toxin binding reveals two open state structures for one acid-sensing ion channel

机译:毒素结合揭示了一个酸感应离子通道的两个开放状态结构

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摘要

Of the three principal conformations of acid-sensing ion channels (ASICs)—closed, open and desensitized—only the atomic structure of the desensitized conformation had been known. Two recent papers report the crystal structure of chicken ASIC1 in complex with the spider toxin psalmotoxin 1, and one of these studies finds that, depending on the pH, channels are in two different open conformations. Compared with the desensitized conformation, toxin binding induces only subtle structural changes in the lower part of the large extracellular domain but a complete rearrangement of the two transmembrane domains (TMDs), suggesting that desensitization gating (the transition from open to desensitized) is mainly associated with conformational rearrangements of the TMDs. Moreover, the study reveals how two different arrangements of the TMDs in the open state give rise to ion pores with different selectivity for monovalent cations.
机译:在酸敏感离子通道(ASICs)的三个主要构象中(闭合,开放和脱敏),只有脱敏构象的原子结构是已知的。最近的两篇论文报道了与蜘蛛毒素psalmotoxin 1复合的鸡肉ASIC1的晶体结构,其中一项研究发现,根据pH值,通道处于两种不同的开放构象。与脱敏构象相比,毒素结合仅诱导大细胞外结构域下部的细微结构变化,但导致两个跨膜结构域(TMD)完全重排,这表明脱敏门控(从开放到脱敏的转变)主要相关TMD的构象重排。此外,研究揭示了在开放状态下TMD的两种不同排列方式如何产生对单价阳离子具有不同选择性的离子孔。

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