Anantharamaiah G M, Jones J L, Brouillette C G, Schmidt C F, Chung B H, Hughes T A, Bhown A S, Segrest J P
J Biol Chem. 1985 Aug 25;260(18):10248-55.
The amphipathic helix hypothesis for the lipid-associating domains of exchangeable plasma apolipoproteins has been further studied by analysis of the structure of the complexes formed between four synthetic peptide analogs of the amphipathic helix and dimyristoyl phosphatidylcholine (DMPC). Density gradient ultracentrifugation, negative stain electron microscopy, nondenaturing gradient gel electrophoresis, 1H NMR, high sensitivity differential scanning calorimetry, and circular dichroism were the techniques used in these studies. The two analogs Asp-Trp-Leu-Lys-Ala-Phe-Tyr-Asp-Lys-Val-Ala-Glu-Lys-Leu-Lys-Glu-Ala-Phe (18A) and 18A-Pro-18A whose sequences most strongly mimic native amphipathic sequences were found also most strongly to mimic apolipoprotein A-I in DMPC complex structure. The covalently linked dimer of the prototype amphipathic analog 18A, 18A-Pro-18A, appears to have greater lipid affinity than 18A. This presumably is the result of the cooperativity provided by two covalently linked lipid-associating domains in 18A-Pro-18A. The studies further suggest that the charge-reversed analog of the prototype 18A, reverse-18A, has the lowest lipid affinity of the four analogs studied and forms only marginally stable discoidal DMPC complexes. We postulate that this low lipid affinity is due predominantly, but not necessarily exclusively, to the lack of a hydrophobic contribution of lysine residues at the polar-nonpolar interface of reverse-18A versus 18A. The intermediate lipid affinity of des-Val10-18A, the fourth analog peptide, to produce a rank order of 18A-Pro-18A greater than 18A greater than des-Val10-18A greater than reverse-18A, supports this interpretation. Des-Val10-18A which has Val deleted from 18A has an amphipathic helical structure partially disrupted by the shift of 2 lysine residues away from the polar-nonpolar interface.
通过分析两亲性螺旋的四种合成肽类似物与二肉豆蔻酰磷脂酰胆碱(DMPC)形成的复合物的结构,对可交换血浆载脂蛋白的脂质结合结构域的两亲性螺旋假说进行了进一步研究。密度梯度超速离心、负染电子显微镜、非变性梯度凝胶电泳、1H NMR、高灵敏度差示扫描量热法和圆二色性是这些研究中使用的技术。发现两种类似物天冬氨酸-色氨酸-亮氨酸-赖氨酸-丙氨酸-苯丙氨酸-酪氨酸-天冬氨酸-赖氨酸-缬氨酸-丙氨酸-谷氨酸-赖氨酸-亮氨酸-赖氨酸-谷氨酸-丙氨酸-苯丙氨酸(18A)和18A-脯氨酸-18A,其序列最强烈地模拟天然两亲性序列,在DMPC复合物结构中也最强烈地模拟载脂蛋白A-I。原型两亲性类似物18A的共价连接二聚体18A-脯氨酸-18A似乎比18A具有更高的脂质亲和力。这大概是18A-脯氨酸-18A中两个共价连接的脂质结合结构域提供的协同作用的结果。研究进一步表明,原型18A的电荷反转类似物反向-18A在所研究的四种类似物中脂质亲和力最低,仅形成边缘稳定的盘状DMPC复合物。我们推测,这种低脂质亲和力主要但不一定完全是由于反向-18A与18A相比,在极性-非极性界面处赖氨酸残基缺乏疏水贡献。第四种类似物肽去缬氨酸10-18A的中等脂质亲和力产生了18A-脯氨酸-18A大于18A大于去缬氨酸10-18A大于反向-18A的排序,支持了这一解释。从18A中缺失缬氨酸的去缬氨酸10-18A具有两亲性螺旋结构,该结构因2个赖氨酸残基从极性-非极性界面移位而部分破坏。