首页> 外文OA文献 >Helical Distortion in Tryptophan- and Lysine-Anchored Membrane-Spanning α-Helices as a Function of Hydrophobic Mismatch: A Solid-State Deuterium NMR Investigation Using the Geometric Analysis of Labeled Alanines Method
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Helical Distortion in Tryptophan- and Lysine-Anchored Membrane-Spanning α-Helices as a Function of Hydrophobic Mismatch: A Solid-State Deuterium NMR Investigation Using the Geometric Analysis of Labeled Alanines Method

机译:色氨酸和赖氨酸锚定的跨膜α螺旋中的螺旋变形与疏水错配的关系:使用标记的Alanines方法的几何分析的固态氘核磁共振研究

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摘要

We used solid-state deuterium NMR spectroscopy and geometric analysis of labeled alanines to investigate the structure and orientation of a designed synthetic hydrophobic, membrane-spanning α-helical peptide that is anchored within phosphatidylcholine (PC) bilayers using both Trp and Lys side chains near the membrane/water interface. The 23-amino-acid peptide consists of an alternating Leu/Ala core sequence that is expected to be α-helical, flanked by aromatic and then cationic anchors at both ends of the peptide: acetyl-GKALW(LA)6LWLAKA-amide (KWALP23). The geometric analysis of labeled alanines method was elaborated to permit the incorporation and assignment of multiple alanine labels within a single synthetic peptide. Peptides were incorporated into oriented bilayers of dilauroyl- (di-C12:0-), dimyristoyl- (di-C14:0-), or dioleoyl- (di-C18:1c-) PC. In the C12:0 and C14:0 lipids, the 2H-NMR quadrupolar splittings for the set of six core alanines could not be fit to a canonical undistorted α-helix. Rather, we found that a model containing a helical distortion, such as a localized discontinuity or “kink” near the peptide and bilayer center, could fit the data for KWALP23 in these shorter lipids. The suggestion of helix distortion was confirmed by 2H-NMR spectra for KWALP23 in which Leu8 was changed to deuterated Ala8. Further analysis involving reexamination of earlier data led to a similar conclusion that acetyl-GWW(LA)8LWWA-amide (WALP23) is distorted in dilauroyl-PC, allowing significant improvement in the fitting of the 2H-NMR results. In contrast, WALP23 and KWALP23 are well represented as undistorted α-helices in dioleoyl-PC, suggesting that the distortion could be a response to hydrophobic mismatch between peptide and lipids.
机译:我们使用固态氘核磁共振波谱和标记的丙氨酸的几何分析来研究设计的合成疏水,跨膜α螺旋肽的结构和方向,该肽通过Trp和Lys侧链固定在磷脂酰胆碱(PC)双层中膜/水界面。 23个氨基酸的肽段由一个交替的Leu / Ala核心序列组成,该序列预期为α螺旋,在肽段的两端侧接芳族,然后是阳离子锚点:乙酰基-GKALW(LA)6LWLAKA-酰胺(KWALP23 )。精心设计了标记丙氨酸的几何分析方法,以允许在单个合成肽中掺入和分配多个丙氨酸标记。将肽掺入二月桂酰基-(di-C12:0-),二肉豆蔻酰基-(di-C14:0-)或二油酰基-(di-C18:1c-)PC的定向双层中。在C12:0和C14:0脂质中,六个核心丙氨酸的集合的2 H-NMR四极分裂不能与标准的未扭曲α-螺旋相适应。相反,我们发现包含螺旋形扭曲的模型,例如肽和双层中心附近的局部不连续或“扭结”,可能适合这些较短脂质中KWALP23的数据。通过KWALP23的2H-NMR光谱证实了螺旋变形的暗示,其中Leu8变为氘化的Ala8。涉及重新检查较早数据的进一步分析得出了相似的结论,即二月桂酰-PC中的乙酰基-GWW(LA)8LWWA-酰胺(WALP23)发生了扭曲,从而显着改善了2H-NMR结果的拟合度。相比之下,WALP23和KWALP23在二油酰基-PC中很好地表示为未扭曲的α螺旋,表明该扭曲可能是对肽与脂质之间疏水性错配的反应。

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