Department of RNA Therapeutics, Merck & Co. Inc., 770 Sumneytown Pike, West Point, PA 19486, USA.
Biochem J. 2011 Apr 15;435(2):475-87. doi: 10.1042/BJ20101021.
Effective delivery of siRNA (small interfering RNA) into the cells requires the translocation of siRNA into the cytosol. One potential delivery strategy uses cell-delivery peptides that facilitate this step. In the present paper, we describe the characterization of an amphipathic peptide that mediates the uptake of non-covalently bound siRNA into cells and its subsequent release into the cytosol. Biophysical characterization of peptide and peptide/siRNA mixtures at neutral and lysosomal (acidic) pH suggested the formation of α-helical structure only in endosomes and lysosomes. Surprisingly, even though the peptide enhanced the uptake of siRNA into cells, no direct interaction between siRNA and peptide was observed at neutral pH by isothermal titration calorimetry. Importantly, we show that peptide-mediated siRNA uptake occurred through endocytosis and, by applying novel endosomal-escape assays and cell-fractionation techniques, we demonstrated a pH-dependent alteration in endosome and lysosome integrity and subsequent release of siRNA and other cargo into the cytosol. These results indicate a peptide-mediated siRNA delivery through a pH-dependent and conformation-specific interaction with cellular membranes and not with the cargo.
有效的将 siRNA(小干扰 RNA)递送到细胞中需要将 siRNA 转运到细胞质中。一种潜在的递药策略是使用细胞递药肽来促进这一步骤。在本论文中,我们描述了一种两亲性肽的特性,该肽介导非共价结合的 siRNA 进入细胞,并随后将其释放到细胞质中。在中性和溶酶体(酸性)pH 下对肽和肽/siRNA 混合物进行的生物物理特性分析表明,只有在内体和溶酶体中才会形成 α-螺旋结构。令人惊讶的是,尽管该肽增强了 siRNA 进入细胞的摄取,但通过等温热力学滴定法在中性 pH 下未观察到 siRNA 与肽之间的直接相互作用。重要的是,我们表明肽介导的 siRNA 摄取是通过内吞作用发生的,并且通过应用新型内体逃逸测定和细胞分级分离技术,我们证明了内体和溶酶体完整性在 pH 依赖性方面的改变,随后将 siRNA 和其他货物释放到细胞质中。这些结果表明,肽通过与细胞膜的 pH 依赖性和构象特异性相互作用而不是与货物一起介导 siRNA 的递药。