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糖肽-膜相互作用:糖基脑啡肽类似物在两亲性介质中通过核磁共振和圆二色光谱呈现转角构象。

Glycopeptide-membrane interactions: glycosyl enkephalin analogues adopt turn conformations by NMR and CD in amphipathic media.

作者信息

Palian Michael M, Boguslavsky V I, O'Brien David F, Polt Robin

机构信息

Carl S. Marvel Laboratories, Department of Chemistry, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Am Chem Soc. 2003 May 14;125(19):5823-31. doi: 10.1021/ja0268635.

Abstract

Four enkephalin analogues (Tyr-D-Thr-Gly-Phe-Leu-Ser-CONH(2), 1, and the related O-linked glycopeptides bearing the monosaccharide beta-glucose, 2, the disaccharide beta-maltose, 3, and the trisaccharide beta-maltotriose, 4) were synthesized, purified by HPLC, and biophysical studies were conducted to examine their interactions with membrane model systems. Glycopeptide 2 has been previously reported to penetrate the blood-brain barrier (BBB), and produce potent analgesia superior to morphine in mice (J. Med. Chem.2000, 43, 2586-90 and J. Pharm. Exp. Ther. 2001, 299, 967-972). The parent peptide and its three glycopeptide derivatives were studied in aqueous solution and in the presence of micelles using 2-D NMR, CD, and molecular mechanics (Monte Carlo studies). Consistent with previous conformational studies on cyclic opioid agonist glycopeptides, it was seen that glycosylation did not significantly perturb the peptide backbone in aqueous solution, but all four compounds strongly associated with 5-30 mM SDS or DPC micelles, and underwent profound membrane-induced conformational changes. Interaction was also observed with POPC:POPE:cholesterol lipid vesicles (LUV) in equilibrium dialysis experiments. Although the peptide backbones of 1-4 possessed random coil structures in water, in the presence of the lipid phase they each formed a nearly identical pair of structures, all with a stable beta-turn motif at the C-terminus. Use of spin labels (Mn(2+) and 5-DOXYL-stearic acid) allowed for the determination of the position and orientation of the compounds relative to the surface of the micelle.

摘要

合成了四种脑啡肽类似物(Tyr-D-Thr-Gly-Phe-Leu-Ser-CONH₂,1,以及带有单糖β-葡萄糖的相关O-连接糖肽,2,二糖β-麦芽糖,3,和三糖β-麦芽三糖,4),通过高效液相色谱法进行纯化,并开展生物物理研究以考察它们与膜模型系统的相互作用。糖肽2此前已报道可穿透血脑屏障(BBB),并在小鼠中产生优于吗啡的强效镇痛作用(《药物化学杂志》2000年,43卷,2586 - 2590页以及《药物实验与治疗学杂志》2001年,299卷,967 - 972页)。使用二维核磁共振、圆二色光谱和分子力学(蒙特卡罗研究)对母体肽及其三种糖肽衍生物在水溶液中和存在胶束的情况下进行了研究。与先前对环状阿片类激动剂糖肽的构象研究一致,发现糖基化在水溶液中不会显著扰乱肽主链,但所有四种化合物都与5 - 30 mM的十二烷基硫酸钠或二棕榈酰磷脂酰胆碱胶束强烈缔合,并经历了深刻的膜诱导构象变化。在平衡透析实验中还观察到与1-棕榈酰-2-油酰磷脂酰胆碱:1-棕榈酰-2-油酰磷脂酰乙醇胺:胆固醇脂质囊泡(LUV)的相互作用。尽管1 - 4的肽主链在水中具有无规卷曲结构,但在脂质相存在的情况下,它们各自形成了几乎相同的一对结构,所有结构在C端都具有稳定的β-转角基序。使用自旋标记物(Mn²⁺和5-脱氧硬脂酸)可以确定化合物相对于胶束表面的位置和取向。

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