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跨膜肽中残基相对于脂质双层的位置:磷脂双分子层中脂质核欧沃豪斯效应与水化学交换的联合方法

Position of residues in transmembrane peptides with respect to the lipid bilayer: a combined lipid Noes and water chemical exchange approach in phospholipid bicelles.

作者信息

Glover Kerney Jebrell, Whiles Jennifer A, Vold Regitze R, Melacini Giuseppe

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla 92093-0314, USA.

出版信息

J Biomol NMR. 2002 Jan;22(1):57-64. doi: 10.1023/a:1013817818794.

Abstract

The model transmembrane peptide P16 (Ac-KKGLLLALLLLALLLALLLKKA-NH2) was incorporated into small unaligned phospholipid bicelles, which provide a 'native-like' lipid bilayer compatible with high-resolution solution NMR techniques. Using amide-water chemical exchange and amide-lipid cross-relaxation measurements, the interactions between P16 and bicelles were investigated. Distinctive intermolecular NOE patterns observed in band-selective 2D-NOESY spectra of bicellar solutions with several lipid deuteration schemes indicated that P16 is preferentially interacting with the 'bilayered' region of the bicelle rather than with the rim. Furthermore, when amide-lipid NOEs were combined with amide-water chemical exchange cross-peaks of selectively 15N-labeled P16 peptides, valuable information was obtained about the position of selected residues relative to the membrane-water interface. Specifically, three main classes were identified. Class I residues lie outside the bilayer and show amide-water exchange cross-peaks but no amide-lipid NOEs. Class II residues reside in the bilayer-water interface and show both amide-water exchange cross-peaks and amide-lipid NOEs. Class III residues are embedded within the hydrophobic core of the membrane and show no amide-water exchange cross-peaks but strong amide-lipid NOEs.

摘要

跨膜肽模型P16(Ac-KKGLLLALLLLALLLALLLKKA-NH2)被整合到小型无序磷脂双分子层中,该双分子层提供了一种与高分辨率溶液核磁共振技术兼容的“类天然”脂质双层。通过酰胺-水化学交换和酰胺-脂质交叉弛豫测量,研究了P16与双分子层之间的相互作用。在具有几种脂质氘代方案的双分子层溶液的带选择性二维NOESY光谱中观察到的独特分子间NOE模式表明,P16优先与双分子层的“双层”区域相互作用,而不是与边缘相互作用。此外,当酰胺-脂质NOE与选择性15N标记的P16肽的酰胺-水化学交换交叉峰相结合时,获得了有关选定残基相对于膜-水界面位置的有价值信息。具体而言,确定了三个主要类别。I类残基位于双层之外,显示酰胺-水交换交叉峰,但没有酰胺-脂质NOE。II类残基位于双层-水界面,显示酰胺-水交换交叉峰和酰胺-脂质NOE。III类残基嵌入膜的疏水核心内,没有显示酰胺-水交换交叉峰,但有很强的酰胺-脂质NOE。

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