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Amide vibrations are delocalized across the hydrophobic interface of a transmembrane helix dimer

机译:酰胺振动在跨膜螺旋二聚体的疏水界面上是局域性的

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The tertiary interactions between amide-I vibrators on the separate helices of transmembrane helix dieters were probed by ultrafast 2D vibrational photon echo spectroscopy. The 2D IR approach proves to be a useful structural method for the study of membrane-bound structures. The 27-residue human erythrocyte protein Glycophorin A transmembrane peptide sequence: KKITLIIFG(79)VMAGVIGTILLISWG(94)IKK was labeled at G(79) and G(94) with C-13=O-16 or C-13=O-18. The isotopomers and their 50:50 mixtures formed helical dieters in SIDS micelles whose 2D IR spectra showed components from homodimers when both helices had either C-13=O-16 or C-13=O-18 substitution and a heterodimer when one had C-13=O-16 substitution and the other had C-13=O-18 substitution. The cross-peaks in the pure heterodimer 2D IR difference spectrum and the splitting of the homodimer peaks in the linear IR spectrum show that the amide-I mode is delocalized across a pair of helices. The excitation exchange coupling in the range 4.3-6.3 cm(-1) arises from through-space interactions between amide units on different helices. The angle between the two Gly(79) amide-I transition dipoles, estimated at 103 degrees from linear IR spectroscopy and 110 degrees from 2D IR spectroscopy, combined with the coupling led to a structural picture of the hydrophobic interface that is remarkably consistent with results from NMR on helix dieters. The helix crossing angle in SIDS is estimated at 45 degrees. Two-dimensional IR spectroscopy also sets limits on the range of geometrical parameters for the helix dieters from an analysis of the coupling constant distribution.
机译:通过超快2D振动光子回波光谱技术探测跨膜螺旋节食剂的单独螺旋上酰胺I振动器之间的三级相互作用。二维红外方法被证明是研究膜结合结构的一种有用的结构方法。 27个残基的人红细胞蛋白糖皮质激素A跨膜肽序列KKITLIIFG(79)VMAGVIGTILLISWG(94)IKK用C-13 = O-16或C-13 = O-18标记在G(79)和G(94) 。异位异构体及其50:50混合物在SIDS胶束中形成螺旋节食剂,当两个螺旋均被C-13 = O-16或C-13 = O-18取代时,其2D IR光谱显示来自同二聚体的组分,而当一个具有C时,其异二聚体-13 = O-16取代,另一个具有C-13 = O-18取代。纯异质二聚体2D IR差异光谱中的交叉峰以及线性IR光谱中同二聚体峰的分裂表明,酰胺I模式在一对螺旋上是离域的。在4.3-6.3 cm(-1)范围内的激发交换耦合起因于不同螺旋上酰胺单元之间的空间相互作用。两个Gly(79)酰胺-I跃迁偶极子之间的夹角(根据线性IR光谱估计为103度,根据2D IR光谱估计为110度)与耦合相结合,得出疏水界面的结构图,该结果与结果非常一致从螺旋节食器的NMR中获得。小岛屿发展中国家的螺旋交叉角估计为45度。二维红外光谱法还通过分析耦合常数分布,对螺旋节食器的几何参数范围设置了限制。

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