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首页> 外文期刊>The journal of peptide research: official journal of the American Peptide Society >Solution structures of the cytoplasmic linkers between segments S4 and S5 (S4-S5) in domains III and IV of human brain sodium channels in SDS micelles.
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Solution structures of the cytoplasmic linkers between segments S4 and S5 (S4-S5) in domains III and IV of human brain sodium channels in SDS micelles.

机译:SDS胶束中人脑钠通道的结构域III和IV中的区段S4和S5(S4-S5)之间的胞质接头的溶液结构。

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摘要

The two cytoplasmic linkers connecting segment S4 and segment S5 (S4-S5 linker) of both domain III (III/S4-S5) and IV (IV/S4-S5) of the sodium channel alpha-subunit are considered to work as a hydrophobic receptor for the inactivation particle because of the three hydrophobic amino acids of Ile-Phe-Met (IFM motif) in the III-IV linker of the sodium channel alpha-subunit. To date, the solution structures of the peptides related to III/S4-S5 (MP-D3: A1325-M1338) and IV/S4-S5 (MP-D4: T1648-L1666) of human brain sodium channels have been investigated using CD and 1H NMR spectroscopies. SDS micelles were employed as a solvent. The micelles mimic either biological membranes or the interior of a protein and can be a relevant environment at the inactivated state of the channels. It was found that the secondary structures of both MP-D3 and MP-D4 assume alpha-helical conformations around the N-terminal half-side of the sequences, i.e. the residues between V1326 and L1331 in MP-D3 and between L1650 and S1656 in MP-D4. Residue A1329 in MP-D3, which is considered to interact with F1489 of the IFM motif, was found to be located within the alpha-helix. Residues F1651, M1654, M1655, L1657 and A1669 in MP-D4, which also play an important role in inactivation, formed a hydrophobic cluster on one side of the helix. This cluster was concluded to interact with the hydrophobic cluster due to the III-IV linker before the inactivation gate closes.
机译:连接钠通道α-亚基的结构域III(III / S4-S5)和IV(IV / S4-S5)的区段S4和区段S5(S4-S5接头)的两个胞质接头被认为是疏水的钠通道α-亚基的III-IV接头中的Ile-Phe-Met的三个疏水氨基酸(IFM基序)是灭活颗粒的受体。迄今为止,已使用CD研究了与人脑钠通道的III / S4-S5(MP-D3:A1325-M1338)和IV / S4-S5(MP-D4:T1648-L1666)相关的肽的溶液结构和1 H NMR光谱。 SDS胶束用作溶剂。胶束模仿生物膜或蛋白质内部,并且可以在通道的失活状态下成为相关环境。发现MP-D3和MP-D4的二级结构在序列的N-末端半侧周围都具有α-螺旋构象,即MP-D3中的V1326和L1331之间以及残基中的L1650和S1656之间的残基。 MP-D4。发现MP-D3中的残基A1329被认为与IFM基序的F1489相互作用,位于α-螺旋内。 MP-D4中的残基F1651,M1654,M1655,L1657和A1669(在失活中也起着重要作用)在螺旋的一侧形成了疏水簇。结论是,在灭活门关闭之前,该团簇由于III-IV接头与疏水团簇相互作用。

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