Decout A, Labeur C, Vanloo B, Goethals M, Vandekerckhove J, Brasseur R, Rosseneu M
Department of Biochemistry, Universiteit Gent, Belgium.
Mol Membr Biol. 1999 Jul-Sep;16(3):237-46. doi: 10.1080/096876899294553.
Fusogenic peptides belong to a class of helical amphipathic peptides characterized by a hydrophobicity gradient along the long helical axis. According to the prevailing theory regarding the mechanism of action of fusogenic peptides, this hydrophobicity gradient causes the tilted insertion of the peptides in membranes, thus destabilizing the lipid core and, thereby, enhancing membrane fusion. To assess the role of the hydrophobicity gradient upon the fusogenic activity, two of these fusogenic peptides and several variants were synthesized. The LCAT-(57-70) peptide, which is part of the sequence of the lipolytic enzyme lecithin cholesterol acyltransferase, forms stable beta-sheets in lipids, while the apolipoprotein A-II (53-70) peptide remains predominantly helical in membranes. The variant peptides were designed through amino acid permutations, to be either parallel, perpendicular, or to retain an oblique orientation relative to the lipid-water interface. Peptide-induced vesicle fusion was monitored by lipid-mixing experiments, using fluorescent probes, the extent of peptide-lipid association, the conformation of lipid-associated peptides and their orientation in lipids, were studied by Fourier Transformed Infrared Spectroscopy. A comparison of the properties of the wild-type and variant peptides shows that the hydrophobicity gradient, which determines the orientation of helical peptides in lipids and their fusogenic activity, further influences the secondary structure and lipid binding capacity of these peptides.
融合肽属于一类螺旋两亲性肽,其特征是沿长螺旋轴存在疏水性梯度。根据关于融合肽作用机制的主流理论,这种疏水性梯度导致肽在膜中倾斜插入,从而破坏脂质核心的稳定性,进而增强膜融合。为了评估疏水性梯度对融合活性的作用,合成了其中两种融合肽及其几种变体。脂解酶卵磷脂胆固醇酰基转移酶序列的一部分LCAT-(57-70)肽在脂质中形成稳定的β折叠,而载脂蛋白A-II (53-70)肽在膜中主要保持螺旋结构。通过氨基酸置换设计变体肽,使其相对于脂质-水界面呈平行、垂直或保持倾斜取向。使用荧光探针通过脂质混合实验监测肽诱导的囊泡融合,通过傅里叶变换红外光谱研究肽-脂质缔合的程度、脂质相关肽的构象及其在脂质中的取向。野生型和变体肽性质的比较表明,疏水性梯度决定了螺旋肽在脂质中的取向及其融合活性,还进一步影响这些肽的二级结构和脂质结合能力。