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Autonomous Transmembrane Segment S4 of the Voltage Sensor Domain Partitions into the Lipid Membrane

机译:该电压传感器域分区自治跨膜区段s4进入类脂膜

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摘要

The S4 transmembrane segment in voltage-gated ion channels, a highly basic α helix, responds to changes in membrane potential and induces channel opening. Earlier work by others indicates that the S4 segment interacts with lipids in plasma membrane, but its mechanism is unclear. Working with synthetic tryptophan-labeled S4 peptides, we characterized binding of autonomous S4 to lipid membranes. The binding free energy (5.2 ± 0.2 kcal/mol) of the peptide-lipid interaction was estimated from the apparent dissociation constants, determined from the changes in anisotropy of tryptophan fluorescence induced by addition of lipid vesicles with 30 mol% phosphatidylglycerol. The results are in good agreement with the prediction based on the Wimley-White hydrophobicity scale for interfacial (IF) binding of an alpha-helical peptide to the lipid bilayer (6.98 kcal/mol). High salt inhibited the interaction, thus indicating that the peptide/membrane interaction has both electrostatic and non-electrostatic components. Furthermore, the synthetic S4 corresponding to the Shaker potassium channel was found to spontaneously penetrate into the negatively charged lipid membrane to a depth of about 9 Å. Our results revealed important biophysical parameters that influence the interaction of S4 with the membrane: they include fluidity, surface charge, and surface pressure of the membrane, and the α helicity and regular spacing of basic amino-acid residues in the S4 sequence.
机译:在电压 - 门控离子通道中的S4跨膜段,高度基本的α螺旋,响应膜电位的变化和诱导通道开口。其他人的工作表明S4段与血浆膜中的脂质相互作用,但其机制尚不清楚。使用合成色氨酸标记的S4肽,我们表征了自主S4与脂质膜的结合。从表观解离常数估计肽 - 脂质相互作用的结合自由能(5.2±0.2kcal / mol),从通过加入具有30mol%磷脂酰甘油的脂质囊泡诱导的色氨酸荧光的各向异性的变化确定。结果与基于α-螺旋肽的界面(IF)结合到脂质双层(6.98kcal / mol)的Wimley-white疏水性比例的预测良好。高盐抑制相互作用,从而表明肽/膜相互作用具有静电和非静电组分。此外,发现对应于振荡器钾通道的合成S4将带负电荷的脂质膜中的对应渗透到约9的深度。我们的结果揭示了影响S4与膜的相互作用的重要生物物理参数:它们包括膜的流动性,表面电荷和表面压力,以及S4序列中碱基氨基酸残基的α螺旋和常规间隔。

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