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Cell-Penetrating Peptide Induces Leaky Fusion of Liposomes Containing Late Endosome-Specific Anionic Lipid

机译:细胞穿透肽诱导脂质体的泄漏融合脂质体包含后期的内体特异性阴离子脂质。

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摘要

Cationic cell-penetrating peptides (CPPs) are a promising vehicle for the delivery of macromolecular drugs. Although many studies have indicated that CPPs enter cells by endocytosis, the mechanisms by which they cross endosomal membranes remain elusive. On the basis of experiments with liposomes, we propose that CPP escape into the cytosol is based on leaky fusion (i.e., fusion associated with the permeabilization of membranes) of the bis(monoacylglycero)phosphate (BMP)-enriched membranes of late endosomes. In our experiments, prototypic CPP HIV-1 TAT peptide did not interact with liposomes mimicking the outer leaflet of the plasma membrane, but it did induce lipid mixing and membrane leakage as it translocated into liposomes mimicking the lipid composition of late endosome. Both membrane leakage and lipid mixing depended on the BMP content and were promoted at acidic pH, which is characteristic of late endosomes. Substitution of BMP with its structural isomer, phosphatidylglycerol (PG), significantly reduced both leakage of the aqueous probe from liposomes and lipid mixing between liposomes. Although affinity of binding to TAT was similar for BMP and PG, BMP exhibited a higher tendency to support the inverted hexagonal phase than PG. Finally, membrane leakage and peptide translocation were both inhibited by inhibitors of lipid mixing, further substantiating the hypothesis that cationic peptides cross BMP-enriched membranes by inducing leaky fusion between them.
机译:阳离子细胞穿透肽(CPPs)是一种有前途的运载大分子药物的载体。尽管许多研究表明CPP通过内吞作用进入细胞,但它们穿越内体膜的机制仍然难以捉摸。基于脂质体的实验,我们提出CPP逃逸进入胞质溶胶是基于晚期内体的富含双(单酰基甘油)磷酸(BMP)的膜的渗漏融合(即与膜透化相关的融合)。在我们的实验中,原型CPP HIV-1 TAT肽不会与模仿质膜外小叶的脂质体发生相互作用,但会转移到模仿晚期内体脂质组成的脂质体中,从而引起脂质混合和膜渗漏。膜泄漏和脂质混合均取决于BMP含量,并在酸性pH值下得到促进,这是晚期内体的特征。用其结构异构体磷脂酰甘油(PG)取代BMP,可显着减少水性探针从脂质体泄漏和脂质体之间的脂质混合。尽管与TAT结合的亲和力对于BMP和PG相似,但是BMP表现出比PG更高的支持倒六角相的趋势。最终,膜泄漏和肽易位都受到脂质混合抑制剂的抑制,进一步证实了阳离子肽通过诱导BMP富集膜之间的渗漏融合而穿越BMP富集膜的假设。

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