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首页> 外文期刊>Channels >Fourier transform coupled tryptophan scanning mutagenesis identifies a bending point on the lipid-exposed deltaM3 transmembrane domain of the Torpedo californica nicotinic acetylcholine receptor.
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Fourier transform coupled tryptophan scanning mutagenesis identifies a bending point on the lipid-exposed deltaM3 transmembrane domain of the Torpedo californica nicotinic acetylcholine receptor.

机译:傅里叶变换耦合色氨酸扫描诱变在鱼雷加利福尼亚烟碱型乙酰胆碱受体的脂质暴露的deltaM3跨膜结构域上确定了一个弯曲点。

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The nicotinic acetylcholine receptor (nAChR) is a member of a family of ligand-gated ion channels that mediate diverse physiological functions, including fast synaptic transmission along the peripheral and central nervous systems. Several studies have made significant advances toward determining the structure and dynamics of the lipid-exposed domains of the nAChR. However, a high-resolution atomic structure of the nAChR still remains elusive. In this study, we extended the Fourier transform coupled tryptophan scanning mutagenesis (FT-TrpScanM) approach to gain insight into the secondary structure of the deltaM3 transmembrane domain of the Torpedo californica nAChR, to monitor conformational changes experienced by this domain during channel gating, and to identify which lipid-exposed positions are linked to the regulation of ion channel kinetics. The perturbations produced by periodic tryptophan substitutions along the deltaM3 transmembrane domain were characterized by two-electrode voltage clamp and (125)I-labeled alpha-bungarotoxin binding assays. The periodicity profiles and Fourier transform spectra of this domain revealed similar helical structures for the closed- and open-channel states. However, changes in the oscillation patterns observed between positions Val-299 and Val-304 during transition between the closed- and open-channel states can be explained by the structural effects caused by the presence of a bending point introduced by a Thr-Gly motif at positions 300-301. The changes in periodicity and localization of residues between the closed-and open-channel states could indicate a structural transition between helix types in this segment of the domain. Overall, the data further demonstrate a functional link between the lipid-exposed transmembrane domain and the nAChR gating machinery.CAS Registry/EC Number/Name of Substance 0 (Fish Proteins). 0 (Receptors, Nicotinic).
机译:烟碱乙酰胆碱受体(nAChR)是介导多种生理功能的配体门控离子通道家族的成员,包括沿周围和中枢神经系统的快速突触传递。多项研究在确定nAChR脂质暴露域的结构和动力学方面取得了重大进展。但是,nAChR的高分辨率原子结构仍然难以捉摸。在这项研究中,我们扩展了傅里叶变换色氨酸扫描诱变(FT-TrpScanM)方法,以深入了解加州鱼雷nAChR的delM3跨膜结构域的二级结构,以监控该通道在门控期间经历的构象变化,以及以确定哪些脂质暴露的位置与离子通道动力学的调节有关。沿delM3跨膜结构域的周期性色氨酸取代产生的扰动通过两电极电压钳和(125)I标记的α-真菌毒素结合测定来表征。该域的周期性轮廓和傅立叶变换光谱揭示了闭合和开放通道状态的相似螺旋结构。然而,在闭通道和开通道状态之间转换期间,在位置Val-299和Val-304之间观察到的振荡模式变化可以通过由Thr-Gly基序引入的弯曲点的存在引起的结构效应来解释。在位置300-301。闭通道和开通道状态之间残基的周期性和局部性变化可能表明在该区域的该区段中螺旋类型之间的结构转变。总体而言,数据进一步证明了脂质暴露的跨膜结构域与nAChR门控机制之间的功能联系。CAS Registry / EC编号/物质0(鱼蛋白)名称。 0(受体,烟碱)。

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