Kleinschmidt J H, Marsh D
Max-Planck-Institut für biophysikalische Chemie, Abteilung Spektroskopie, Göttingen, Germany.
Biophys J. 1997 Nov;73(5):2546-55. doi: 10.1016/S0006-3495(97)78283-3.
The interactions of lysine oligopeptides with dimyristoyl phosphatidylglycerol (DMPG) bilayer membranes were studied using spin-labeled lipids and electron spin resonance spectroscopy. Tetralysine and pentalysine were chosen as models for the basic amino acid clusters found in a variety of cytoplasmic membrane-associating proteins, and polylysine was chosen as representative of highly basic peripherally bound proteins. A greater motional restriction of the lipid chains was found with increasing length of the peptide, while the saturation ratio of lipids per peptide was lower for the shorter peptides. In DMPG and dimyristoylphosphatidylserine host membranes, the perturbation of the lipid chain mobility by polylysine was greater for negatively charged spin-labeled lipids than for zwitterionic lipids, but for the shorter lysine peptides these differences were smaller. In mixed bilayers composed of DMPG and dimyristoylphosphatidylcholine, little difference was found in selectivity between spin-labeled phospholipid species on binding pentalysine. Surface binding of the basic lysine peptides strongly reduced the interfacial pK of spin-labeled fatty acid incorporated into the DMPG bilayers, to a greater extent for polylysine than for tetralysine or pentalysine at saturation. The results are consistent with a predominantly electrostatic interaction with the shorter lysine peptides, but with a closer surface association with the longer polylysine peptide.
利用自旋标记脂质和电子自旋共振光谱研究了赖氨酸寡肽与二肉豆蔻酰磷脂酰甘油(DMPG)双层膜的相互作用。选择四赖氨酸和五赖氨酸作为多种细胞质膜相关蛋白中发现的碱性氨基酸簇的模型,选择聚赖氨酸作为高度碱性外周结合蛋白的代表。随着肽长度的增加,发现脂质链的运动限制更大,而较短肽的每个肽的脂质饱和率较低。在DMPG和二肉豆蔻酰磷脂酰丝氨酸主体膜中,聚赖氨酸对带负电荷的自旋标记脂质的脂质链流动性的扰动大于对两性离子脂质的扰动,但对于较短的赖氨酸肽,这些差异较小。在由DMPG和二肉豆蔻酰磷脂酰胆碱组成的混合双层中,在结合五赖氨酸时,自旋标记磷脂种类之间的选择性差异很小。碱性赖氨酸肽的表面结合强烈降低了掺入DMPG双层中的自旋标记脂肪酸的界面pK,在饱和时,聚赖氨酸比四赖氨酸或五赖氨酸的降低程度更大。结果表明,较短的赖氨酸肽主要通过静电相互作用,而较长的聚赖氨酸肽与表面的结合更紧密。