Mason A James, Leborgne Christian, Moulay Gilles, Martinez Amélie, Danos Olivier, Bechinger Burkhard, Kichler Antoine
Faculté de chimie, Université Louis Pasteur/CNRS LC3-UMR7177, Institut le Bel, 4 rue Blaise Pascal, F-67070 Strasbourg, France.
J Control Release. 2007 Mar 12;118(1):95-104. doi: 10.1016/j.jconrel.2006.12.004. Epub 2006 Dec 8.
We recently showed that the antibacterial histidine rich amphipathic peptide LAH4 has significant DNA transfection capabilities in the absence of serum. To further understand the transfection process and to develop the peptides for future applications, we have combined a range of biochemical and biophysical techniques, including fluorescence assisted cell sorting and (2)H solid-state NMR, to characterise the initial binding of the peptide/DNA complexes to the cell surface and the subsequent release of the complexes from the endosome in the presence of serum. Our results show that both primary and secondary peptide structure play important roles in both of these processes. Specifically, we show that an ideal helix length and positioning of the histidine residues should be maintained to obtain optimal resistance to serum effects and release of DNA from the endosome. Inclusion of d-amino acids at the peptide termini does not reduce serum effects however further enrichment of the peptides with histidine residues can enhance transfection efficiency in the presence of serum. The detailed understanding of these two key stages in the transfection process shows that LAH4-L1 and its derivatives are likely to be highly efficient and robust vectors for a range of applications.
我们最近发现,富含组氨酸的两亲性抗菌肽LAH4在无血清条件下具有显著的DNA转染能力。为了进一步了解转染过程并开发用于未来应用的肽,我们结合了一系列生化和生物物理技术,包括荧光辅助细胞分选和2H固态核磁共振,以表征肽/DNA复合物在血清存在下与细胞表面的初始结合以及随后从内体中释放复合物的过程。我们的结果表明,肽的一级和二级结构在这两个过程中都起着重要作用。具体而言,我们表明应保持理想的螺旋长度和组氨酸残基的定位,以获得对血清效应的最佳抗性以及DNA从内体中的释放。在肽末端包含d-氨基酸不会降低血清效应,但是用组氨酸残基进一步富集肽可以提高血清存在下的转染效率。对转染过程中这两个关键阶段的详细了解表明,LAH4-L1及其衍生物可能是一系列应用中高效且稳定的载体。