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Organization of model helical peptides in lipid bilayers: insight into the behavior of single-span protein transmembrane domains.

机译:脂质双层中模型螺旋肽的组织:单跨蛋白跨膜域行为的见解。

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摘要

Selectively deuterated transmembrane peptides comprising alternating leucine-alanine subunits were examined in fluid bilayer membranes by solid-state nuclear magnetic resonance (NMR) spectroscopy in an effort to gain insight into the behavior of membrane proteins. Two groups of peptides were studied: 21-mers having a 17-amino-acid hydrophobic domain calculated to be close in length to the hydrophobic thickness of 1-palmitoyl-2-oleoyl phosphatidylcholine and 26-mers having a 22-amino-acid hydrophobic domain calculated to exceed the membrane hydrophobic thickness. (2)H NMR spectral features similar to ones observed for transmembrane peptides from single-span receptors of higher animal cells were identified which apparently correspond to effectively monomeric peptide. Spectral observations suggested significant distortion of the transmembrane alpha-helix, and/or potential for restriction of rotation about the tilted helix long axis for even simple peptides. Quadrupole splittings arising from the 26-mer were consistent with greater peptide "tilt" than were those of the analogous 21-mer. Quadrupole splittings associated with monomeric peptide were relatively insensitive to concentration and temperature over the range studied, indicating stable average conformations, and a well-ordered rotation axis. At high peptide concentration (6 mol% relative to phospholipid) it appeared that the peptide predicted to be longer than the membrane thickness had a particular tendency toward reversible peptide-peptide interactions occurring on a timescale comparable with or faster than approximately 10(-5) s. This interaction may be direct or lipid-mediated and was manifest as line broadening. Peptide rotational diffusion rates within the membrane, calculated from quadrupolar relaxation times, T(2e), were consistent with such interactions. In the case of the peptide predicted to be equal to the membrane thickness, at low peptide concentration spectral lineshape indicated the additional presence of a population of peptide having rotational motion that was restricted on a timescale of 10(-5) s.
机译:通过固态核磁共振(NMR)光谱在流体双层膜中检查了包含交替亮氨酸-丙氨酸亚基的选择性氘代跨膜肽,以期深入了解膜蛋白的行为。研究了两组肽:具有17个氨基酸疏水结构域的21-聚体,其长度与1-棕榈酰基-2-油酰基磷脂酰胆碱的疏水厚度相近;具有26-聚体的具有22-氨基酸疏水性计算出的结构域超过了膜的疏水厚度。 (2)H NMR光谱特征与从高等动物细胞的单跨受体的跨膜肽所观察到的相似,已被鉴定出显然与有效的单体肽相对应。光谱观察结果表明,即使是简单的肽,跨膜α-螺旋也有明显的变形,和/或有可能限制围绕倾斜的螺旋长轴的旋转。与类似的21聚体相比,由26聚体产生的四极分裂与更大的肽“倾斜”相符。在研究范围内,与单体肽相关的四极分裂对浓度和温度相对不敏感,表明稳定的平均构象和井井有条的旋转轴。在高肽浓度下(相对于磷脂为6 mol%),看来比肽膜厚度更长的肽具有在可比或快于约10(-5)的时间范围内发生可逆肽-肽相互作用的特殊趋势。 s。这种相互作用可能是直接的,也可能是脂质介导的,表现为线变宽。由四极弛豫时间T(2e)计算得出的膜内肽旋转扩散速率与此类相互作用一致。在预测的肽等于膜厚度的情况下,在低肽浓度下,光谱线形表明存在额外的具有旋转运动的肽群,该运动在10(-5)s的时间尺度上受到限制。

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