Schievano Elisabetta, Calisti Tatiana, Menegazzo Ileana, Battistutta Roberto, Peggion Evaristo, Mammi Stefano, Palù Giorgio, Loregian Arianna
Department of Chemical Sciences, University of Padova, 35131 Padova, Italy.
Biochemistry. 2004 Jul 27;43(29):9343-51. doi: 10.1021/bi0496438.
Pol peptide, an oligopeptide corresponding to the 27 C-terminal amino acids of DNA polymerase from herpes simplex virus type 1, has recently been suggested to translocate from endosomal compartments into the cytosol after being intracellularly delivered via a protein carrier. While an acidic environment was thought to be important for Pol peptide membrane translocation, the mechanism of translocation remains unclear. To investigate the influence of an acidic environment on the conformational properties of the peptide and on its propensity to interact with lipid bilayers, we characterized the structure of Pol peptide at different pH values by both circular dichroism (CD) and nuclear magnetic resonance (NMR) spectroscopy. The influence of detergent micelles, which mimic biological lipid membranes, on the peptide secondary structure was also studied. Our CD results indicate that the peptide is in a random conformation in aqueous solution at both acidic and basic pH, whereas in the presence of dodecylphosphocholine (DPC) micelles, it assumes a partial alpha-helical structure which is significantly pH-dependent. An NMR study confirmed that, in the presence of DPC micelles, a short C-terminal alpha-helix is present at pH 6.5, whereas almost two-thirds of the peptide (residues 10-26) fold into an extended amphipathic alpha-helix at pH 4.0. The orientation of Pol peptide relative to the DPC micelle was investigated using paramagnetic probes at both pH 4.0 and 6.5. These studies show that the peptide inserts deeply into the micelle at pH 4.0, whereas it is more exposed to the aqueous environment at pH 6.5. On the basis of these results, a model which might explain the mechanism of translocation of Pol peptide from acidic endosomes to the cytosol is discussed.
Pol肽是一种与单纯疱疹病毒1型DNA聚合酶的27个C端氨基酸对应的寡肽,最近有研究表明,它通过蛋白质载体在细胞内递送后,可从内体区室转运至细胞质溶胶。虽然酸性环境被认为对Pol肽的膜转运很重要,但其转运机制仍不清楚。为了研究酸性环境对该肽构象性质及其与脂质双层相互作用倾向的影响,我们通过圆二色性(CD)和核磁共振(NMR)光谱对不同pH值下的Pol肽结构进行了表征。还研究了模拟生物脂质膜的去污剂胶束对肽二级结构的影响。我们的CD结果表明,该肽在酸性和碱性pH的水溶液中均呈无规构象,而在存在十二烷基磷酸胆碱(DPC)胶束的情况下,它呈现出部分α-螺旋结构,且显著依赖于pH值。一项NMR研究证实,在存在DPC胶束的情况下,pH 6.5时存在一个短的C端α-螺旋,而在pH 4.0时,几乎三分之二的肽(残基10 - 26)折叠成一个延伸的两亲性α-螺旋。在pH 4.0和6.5时,使用顺磁探针研究了Pol肽相对于DPC胶束的取向。这些研究表明,该肽在pH 4.0时深深插入胶束中,而在pH 6.5时则更多地暴露于水环境中。基于这些结果,讨论了一个可能解释Pol肽从酸性内体转运至细胞质溶胶机制的模型。