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S413-PV细胞穿透肽与模型膜的相互作用:与肽跨生物膜转运的相关性。

Interaction of S413-PV cell penetrating peptide with model membranes: relevance to peptide translocation across biological membranes.

作者信息

Mano Miguel, Henriques Ana, Paiva Artur, Prieto Manuel, Gavilanes Francisco, Simões Sérgio, de Lima Maria C Pedroso

机构信息

Centro de Neurociências e Biologia Celular, Universidade de Coimbra, Portugal.

出版信息

J Pept Sci. 2007 May;13(5):301-13. doi: 10.1002/psc.842.

Abstract

Cell penetrating peptides (CPPs) have been successfully used to mediate the intracellular delivery of a wide variety of molecules of pharmacological interest both in vitro and in vivo, although the mechanisms by which the cellular uptake occurs remain unclear and controversial. Following our previous work demonstrating that the cellular uptake of the S4(13)-PV CPP occurs mainly through an endocytosis-independent mechanism, we performed a detailed biophysical characterization of the interaction of this peptide with model membranes. We demonstrate that the interactions of the S4(13)-PV peptide with membranes are essentially of electrostatic nature. As a consequence of its interaction with negatively charged model membranes, the S4(13)-PV peptide becomes buried into the lipid bilayer, which occurs concomitantly with significant peptide conformational changes that are consistent with the formation of a helical structure. Comparative studies using two related peptides demonstrate that the conformational changes and the extent of cell penetration are dependent on the peptide sequence, indicating that the helical structure acquired by the S4(13)-PV peptide is relevant for its nonendocytic uptake. Overall, our data suggest that the cellular uptake of the S4(13)-PV CPP is a consequence of its direct translocation through cell membranes, following conformational changes induced by peptide-membrane interactions.

摘要

细胞穿透肽(CPPs)已成功用于在体外和体内介导多种具有药理学意义的分子的细胞内递送,尽管细胞摄取发生的机制仍不清楚且存在争议。在我们之前的工作表明S4(13)-PV CPP的细胞摄取主要通过非内吞作用机制发生之后,我们对该肽与模型膜的相互作用进行了详细的生物物理表征。我们证明S4(13)-PV肽与膜的相互作用本质上是静电性质的。由于其与带负电荷的模型膜相互作用,S4(13)-PV肽被埋入脂质双层中,这与显著的肽构象变化同时发生,这些变化与螺旋结构的形成一致。使用两种相关肽的比较研究表明,构象变化和细胞穿透程度取决于肽序列,表明S4(13)-PV肽获得的螺旋结构与其非内吞摄取相关。总体而言,我们的数据表明,S4(13)-PV CPP的细胞摄取是其在肽-膜相互作用诱导的构象变化后直接穿过细胞膜的结果。

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