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Conformational rearrangements in the transmembrane domain of CNGA1 channels revealed by single-molecule force spectroscopy

机译:单分子力谱揭示CNGA1通道跨膜结构域的构象重排

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摘要

Cyclic nucleotide-gated (CNG) channels are activated by binding of cyclic nucleotides. Although structural studies have identified the channel pore and selectivity filter, conformation changes associated with gating remain poorly understood. Here we combine single-molecule force spectroscopy (SMFS) with mutagenesis, bioinformatics and electrophysiology to study conformational changes associated with gating. By expressing functional channels with SMFS fingerprints in Xenopus laevis oocytes, we were able to investigate gating of CNGA1 in a physiological-like membrane. Force spectra determined that the S4 transmembrane domain is mechanically coupled to S5 in the closed state, but S3 in the open state. We also show there are multiple pathways for the unfolding of the transmembrane domains, probably caused by a different degree of α-helix folding. This approach demonstrates that CNG transmembrane domains have dynamic structure and establishes SMFS as a tool for probing conformational change in ion channels.
机译:环状核苷酸门控(CNG)通道通过环状核苷酸的结合而被激活。尽管结构研究已经确定了通道孔和选择性过滤器,但与门控相关的构象变化仍然知之甚少。在这里,我们将单分子力谱(SMFS)与诱变,生物信息学和电生理学相结合,以研究与门控相关的构象变化。通过在非洲爪蟾卵母细胞中表达带有SMFS指纹的功能通道,我们能够研究生理样膜中CNGA1的门控。力谱确定,S4跨膜结构域在闭合状态下机械耦合到S5,但在打开状态下机械耦合到S5。我们还显示跨膜结构域的展开有多种途径,可能是由不同程度的α-螺旋折叠引起的。此方法表明CNG跨膜域具有动态结构,并建立了SMFS作为探测离子通道构象变化的工具。

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