Prongidi-Fix Lydia, Sugawara Masae, Bertani Philippe, Raya Jesus, Leborgne Christian, Kichler Antoine, Bechinger Burkhard
Université Louis Pasteur/CNRS, UMR 7177, Institut de Chimie de Strasbourg, 4, rue Blaise Pascal, 67070 Strasbourg, France.
Biochemistry. 2007 Oct 9;46(40):11253-62. doi: 10.1021/bi700766j. Epub 2007 Sep 12.
The designed alpha-helical amphipathic peptide LAH4 assembles several properties, which makes it an interesting candidate as a gene-delivery vehicle. Besides being short and soluble in aqueous solutions, LAH4 presents cationic residues, which allow for efficient complexation of DNA. In addition, this peptide is poorly hemolytic at neutral pH, while it is able to destabilize biological membranes in acidic conditions. In this study, the structure of the peptide/DNA transfection complex was examined by circular dichroism and solid-state nuclear magnetic resonance spectroscopies and the thermodynamics of its formation and disassembly was monitored in a quantitative manner as a function of pH by isothermal titration calorimetry. Notably, the number of peptides within the complex considerably decreases upon acidification of the medium. This observation has direct and important consequences for the mechanism of action because the acidification of the endosome results in high local concentrations of free peptide in this organelle. Thus, these peptides become available to interact with the endosomal membranes and thereby responsible for the delivery of the transfection complex to the cytoplasm. When these data are taken together, they indicate a dual role of the peptide during the transfection process, namely, DNA complexation and membrane permeabilization.
设计的α-螺旋两亲性肽LAH4具有多种特性,这使其成为一种有趣的基因传递载体候选物。除了短小且可溶于水溶液外,LAH4还带有阳离子残基,这使得它能够有效地与DNA复合。此外,该肽在中性pH下溶血作用较弱,而在酸性条件下能够破坏生物膜的稳定性。在本研究中,通过圆二色光谱和固态核磁共振光谱对肽/DNA转染复合物的结构进行了检测,并通过等温滴定量热法以定量方式监测了其形成和解离的热力学过程,该过程是作为pH的函数。值得注意的是,随着培养基酸化,复合物中的肽数量显著减少。这一观察结果对作用机制具有直接且重要的影响,因为内体的酸化会导致该细胞器中游离肽的局部浓度升高。因此,这些肽可用于与内体膜相互作用,从而负责将转染复合物递送至细胞质。综合这些数据来看,它们表明该肽在转染过程中具有双重作用,即DNA复合和膜通透化作用。