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S4(13)-PV细胞穿透肽在膜模拟脂质系统和细胞膜中诱导物理和形态变化:对细胞内化的影响。

S4(13)-PV cell-penetrating peptide induces physical and morphological changes in membrane-mimetic lipid systems and cell membranes: implications for cell internalization.

作者信息

Cardoso Ana M S, Trabulo Sara, Cardoso Ana L, Lorents Annely, Morais Catarina M, Gomes Paula, Nunes Cláudia, Lúcio Marlene, Reis Salette, Padari Kärt, Pooga Margus, Pedroso de Lima Maria C, Jurado Amália S

机构信息

Centre for Neuroscience and Cell Biology, University of Coimbra, Portugal.

出版信息

Biochim Biophys Acta. 2012 Mar;1818(3):877-88. doi: 10.1016/j.bbamem.2011.12.022. Epub 2011 Dec 31.

Abstract

The present work aims to gain insights into the role of peptide-lipid interactions in the mechanisms of cellular internalization and endosomal escape of the S4(13)-PV cell-penetrating peptide, which has been successfully used in our laboratory as a nucleic acid delivery system. A S4(13)-PV analogue, S4(13)-PVscr, displaying a scrambled amino acid sequence, deficient cell internalization and drug delivery inability, was used in this study for comparative purposes. Differential scanning calorimetry, fluorescence polarization and X-ray diffraction at small and wide angles techniques showed that both peptides interacted with anionic membranes composed of phosphatidylglycerol or a mixture of this lipid with phosphatidylethanolamine, increasing the lipid order, shifting the phase transition to higher temperatures and raising the correlation length between the bilayers. However, S4(13)-PVscr, in contrast to the wild-type peptide, did not promote lipid domain segregation and induced the formation of an inverted hexagonal lipid phase instead of a cubic phase in the lipid systems assayed. Electron microscopy showed that, as opposed to S4(13)-PVscr, the wild-type peptide induced the formation of a non-lamellar organization in membranes of HeLa cells. We concluded that lateral phase separation and destabilization of membrane lamellar structure without compromising membrane integrity are on the basis of the lipid-driven and receptor-independent mechanism of cell entry of S4(13)-PV peptide. Overall, our results can contribute to a better understanding of the role of peptide-lipid interactions in the mechanisms of cell-penetrating peptide membrane translocation, helping in the future design of more efficient cell-penetrating peptide-based drug delivery systems.

摘要

本研究旨在深入了解肽 - 脂质相互作用在S4(13)-PV细胞穿透肽的细胞内化和内体逃逸机制中的作用,该肽在我们实验室已成功用作核酸递送系统。本研究使用了一种S4(13)-PV类似物S4(13)-PVscr,其氨基酸序列被打乱,细胞内化能力不足且无法进行药物递送,用于比较目的。差示扫描量热法、荧光偏振以及小角和广角X射线衍射技术表明,两种肽均与由磷脂酰甘油或这种脂质与磷脂酰乙醇胺的混合物组成的阴离子膜相互作用,增加了脂质有序性,将相转变温度提高到更高温度,并增加了双层之间的相关长度。然而,与野生型肽相比,S4(13)-PVscr在测定的脂质系统中并未促进脂质域分离,而是诱导形成了反相六角形脂质相而非立方相。电子显微镜显示,与S4(13)-PVscr相反,野生型肽在HeLa细胞膜中诱导形成了非层状结构。我们得出结论,膜层状结构的横向相分离和不稳定而不损害膜完整性是S4(13)-PV肽脂质驱动且不依赖受体的细胞进入机制的基础。总体而言,我们的结果有助于更好地理解肽 - 脂质相互作用在细胞穿透肽膜转位机制中的作用,有助于未来设计更高效的基于细胞穿透肽的药物递送系统。

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