Persson Daniel, Thorén Per E G, Lincoln Per, Nordén Bengt
Department of Chemistry and Bioscience, Chalmers University of Technology, SE-412 96 Gothenburg, Sweden.
Biochemistry. 2004 Aug 31;43(34):11045-55. doi: 10.1021/bi036054d.
Reports on serious artifacts associated with the use of cell fixation in studies of the cellular uptake of cell-penetrating peptides, also denoted protein transduction domains, have demonstrated the need for a reevaluation of the current understanding of peptide-mediated cellular delivery of large, hydrophilic molecules. In a recent study on the internalization in unfixed cells of penetratin and its analogues in which tryptophans are substituted for phenylalanines (Pen2W2F), lysines for arginines (PenArg), and arginines for lysines (PenLys), we revealed large dissimilarities in cell interactions among the peptides [Thorén et al. (2003) Biochem. Biophys. Res. Commun. 307, 100-107]. We here investigated possible correlations with their respective affinities for the lipid membranes of large unilamellar vesicles. The variations found in membrane affinity correlated qualitatively with differences in hydrophobicity among the peptides but were by far too small to account for the striking differences in cell membrane binding. Interestingly, we found that the inclusion of a small fraction of lipids conjugated to poly(ethylene glycol) (PEG) in the vesicles both stabilized the vesicle dispersion against peptide-induced aggregation and, furthermore, enhanced the binding of the peptides to the membrane. By use of PEG-conjugated lipids, it could be shown that vesicle aggregation drives an alpha-helix to beta-sheet conformational transition for these peptides. A similar transition was discovered at submicellar concentrations of sodium dodecyl sulfate in aqueous solution for all peptides except PenLys. Finally, significant changes of the contributions to CD spectra from aromatic residues due to their insertion into the membrane were observed.
关于在细胞穿透肽(也称为蛋白质转导结构域)的细胞摄取研究中使用细胞固定相关的严重假象的报告,已经表明有必要重新评估目前对肽介导的大的亲水分子细胞递送的理解。在最近一项关于穿膜肽及其类似物(其中色氨酸取代苯丙氨酸(Pen2W2F)、赖氨酸取代精氨酸(PenArg)以及精氨酸取代赖氨酸(PenLys))在未固定细胞中的内化研究中,我们揭示了这些肽之间细胞相互作用的巨大差异[托伦等人(2003年)《生物化学与生物物理研究通讯》307卷,100 - 107页]。我们在此研究了它们与大单层囊泡脂质膜各自亲和力之间可能的相关性。发现的膜亲和力变化在性质上与肽之间的疏水性差异相关,但远不足以解释细胞膜结合的显著差异。有趣的是,我们发现囊泡中包含一小部分与聚乙二醇(PEG)共轭的脂质,既稳定了囊泡分散体以抵抗肽诱导的聚集,而且还增强了肽与膜的结合。通过使用PEG共轭脂质,可以表明囊泡聚集驱动这些肽从α螺旋向β折叠构象转变。除PenLys外,在水溶液中十二烷基硫酸钠亚胶束浓度下所有肽都发现了类似的转变。最后,观察到由于芳香族残基插入膜中导致圆二色光谱贡献的显著变化。