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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >A study of carbobenzoxy--phenylalanine--phenylalanine-glycine, an inhibitor of membrane fusion, in phospholipid bilayers with multinuclear magnetic resonance
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A study of carbobenzoxy--phenylalanine--phenylalanine-glycine, an inhibitor of membrane fusion, in phospholipid bilayers with multinuclear magnetic resonance

机译:多核磁共振的磷脂双层磷脂氧基 - 苯丙氨酸 - 苯丙氨酸 - 苯丙氨酸 - 苯丙氨酸 - 磷脂双层

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The anti-viral and membrane fusion inhibitor, carbobenzoxy--phenylalanine--phenylalanine-glycine (ZfFG), was studied in phospholipid bilayers, where earlier studies had indicated this peptide functioned. Multinuclear magnetic resonance (NMR) studies were performed with isotopically labeled peptide. A peptide labeled in the glycine carboxyl with 13C was synthesized, and the isotropic 13C-NMR chemical shift of that carbon was measured as a function of pH. A pKa of 3.6 for the carboxyl was determined from the peptide bound to a phosphatidylcholine bilayer. ZfFG inhibits the formation by sonication of highly curved, small unilamellar vesicles. Experiments as a function of pH revealed that this ability of ZfFG was governed by a pKa of 3.7. Therefore the protonation state of the carboxyl of ZfFG appeared to regulate the effectiveness of this anti-viral peptide at destabilizing highly curved phospholipid assemblies. Such destabilization had previously been discovered to be related to the mechanism of the anti-fusion and anti-viral activity of this peptide. The location of the carboxyl of ZfFG in the membrane was probed with paramagnetic relaxation enhancement of the 13C spin lattice relaxation of the carboxyl carbon in the glycine of ZfFG (enriched in 13C). Results suggested that this carboxyl is at or above the surface of the phospholipid bilayer. The dynamics of the molecule in the membrane were examined with 2H-NMR studies of ZfFG, deuterated in the α-carbon protons of the glycine. When ZfFG was bound to membranes of phosphatidylcholine, a sharp 2H-NMR spectral component was observed, consistent with a disordering of the glycine methylene segment of the peptide. When ZfFG was bound to N-methyl dioleoylphosphatidylethanolamine (N-methyl DOPE) bilayers at temperatures below 30° C, a large quadrupole splitting was observed. These results suggest that ZfFG likely inhibits membrane fusion from the surface of the lipid bilayer, but not by forming a tight, stoichiometric complex with the phospholipids.
机译:在磷脂双层中研究了抗病毒和膜融合抑制剂,Carbobenzoxy - 苯丙氨酸 - 苯丙氨酸 - 甘氨酸(ZFFG),其中提前研究表明该肽具有功能。用同位素标记的肽进行多核磁共振(NMR)研究。合成了用13℃的甘氨酸羧基标记的肽,并根据pH的函数测量该碳的各向同性13C-NMR化学偏移。从结合磷脂酰胆碱双层的肽测定羧基的3.6的PKA。 ZFFG通过超声处理高弯曲的小单层囊泡抑制形成。作为pH的函数的实验表明,ZFFG的这种能力受到3.7的PKA的管辖。因此,ZFFG的羧基的质子化状态似乎调节该抗病毒肽在稳定的高弯磷脂组件中的有效性。先前已经发现这种稳定化与该肽的抗融合和抗病毒活性的机制有关。 ZFFG中羧基的位置被探测了ZFFG甘氨酸中羧基碳的13C旋转晶格弛豫的顺磁性弛豫增强(富集13C)。结果表明该羧基位于磷脂双层的表面上或高于磷脂双层的表面上。检查膜中分子的动态,用ZFFG的2H-NMR研究检查,在甘氨酸的α-碳质子中氘化。当ZFFG与磷脂酰胆碱的膜结合时,观察到夏普的2H-NMR光谱分量,与肽的甘氨酸亚甲基片段的失调一致。当ZFFG在低于30℃的温度下与N-甲基二酰磷脂酰乙醇胺(N-甲基涂料)双层相结合时,观察到大量的四极杆分裂。这些结果表明,ZFFG可能抑制来自脂质双层表面的膜融合,而不是通过与磷脂形成紧的化学计量复合物。

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