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载脂蛋白类两亲性α-螺旋形成肽与磷脂相互作用的核磁共振研究。

Nuclear magnetic resonance investigation of the interactions with phospholipid of an amphipathic alpha-helix-forming peptide of the apolipoprotein class.

作者信息

Lund-Katz S, Anantharamaiah G M, Venkatachalapathi Y V, Segrest J P, Phillips M C

机构信息

Physiology and Biochemistry Department, Medical College of Pennsylvania, Philadelphia 19129.

出版信息

J Biol Chem. 1990 Jul 25;265(21):12217-23.

PMID:2373689
Abstract

To further understand the packing of amphipathic alpha-helices of apolipoproteins in serum lipoproteins, we have investigated the interactions with dimyristoyl phosphatidylcholine (DMPC) of a 13C-labeled, 18-residue peptide (18A) which can form an amphipathic alpha-helix. This peptide whose amino acid sequence is DWLKAFYDKVAEKLKEAF has the positive-negative residue clustering typical of the apolipoprotein class of amphipathic helix. 13CH3-alanine was introduced as the 11th residue of 18A so that the 13CH3 group protrudes on the apolar side of the amphipathic helix. [13C]NMR spectra of [13C-Ala11]18A in discoidal complexes with DMPC show three resonances from the Ala-13CH3 group; one originates from 18A in aqueous solution, while those at chemical shifts (delta) of 15.2 and 16.4 ppm are assigned to 18A in the "edge" and "faces," respectively, of the discoidal complex. The proportion of 18A in the faces of the discoidal complex increases as the size of the disk is increased by raising the lipid/peptide ratio. 18A covers the edge of the disk so that the 13CH3-Ala side chain from these molecules is in contact with DMPC acyl chains. [13C-Ala11]18A bound to the surface of an egg PC small unilamellar vesicle gives a single resonance from 18A at delta 16.3 ppm consistent with there being no edge location. Cooling 18A-DMPC disks to 15 degrees C crystallizes the DMPC bilayer and restricts the motion of the 13CH3-Ala group of the 18A molecules. The molecular motions of the side chains of the amphipathic helix are sensitive to their location in the disk and to PC molecular packing.

摘要

为了进一步了解血清脂蛋白中载脂蛋白两亲性α-螺旋的堆积情况,我们研究了一种能形成两亲性α-螺旋的13C标记的18个残基肽(18A)与二肉豆蔻酰磷脂酰胆碱(DMPC)的相互作用。该肽的氨基酸序列为DWLKAFYDKVAEKLKEAF,具有载脂蛋白类两亲性螺旋典型的正负残基聚集特征。将13CH3-丙氨酸引入18A的第11位残基,使13CH3基团突出于两亲性螺旋的非极性一侧。[13C-Ala11]18A与DMPC形成的盘状复合物的[13C]NMR谱显示来自Ala-13CH3基团的三个共振峰;一个源于水溶液中的18A,而化学位移(δ)为15.2和16.4 ppm的共振峰分别归属于盘状复合物“边缘”和“表面”的18A。通过提高脂质/肽比例增加盘的尺寸时,盘状复合物表面的18A比例增加。18A覆盖盘的边缘,使得这些分子的13CH3-Ala侧链与DMPC酰基链接触。与卵PC小单层囊泡表面结合的[13C-Ala11]18A在δ 16.3 ppm处给出来自18A的单一共振峰,这与不存在边缘位置一致。将18A-DMPC盘冷却至15℃会使DMPC双层结晶,并限制18A分子的13CH3-Ala基团的运动。两亲性螺旋侧链的分子运动对其在盘中的位置以及PC分子堆积敏感。

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