Mano Miguel, Teodósio Cristina, Paiva Artur, Simões Sérgio, Pedroso de Lima Maria C
Center for Neuroscience and Cell Biology of Coimbra, University of Coimbra, 3004-517 Coimbra, Portugal.
Biochem J. 2005 Sep 1;390(Pt 2):603-12. doi: 10.1042/BJ20050577.
Cell-penetrating peptides have been shown to translocate across eukaryotic cell membranes through a temperature-insensitive and energy-independent mechanism that does not involve membrane receptors or transporters. Although cell-penetrating peptides have been successfully used to mediate the intracellular delivery of a wide variety of molecules of pharmacological interest both in vitro and in vivo, the mechanisms by which cellular uptake occurs remain unclear. In the face of recent reports demonstrating that uptake of cell-penetrating peptides occurs through previously described endocytic pathways, or is a consequence of fixation artifacts, we conducted a critical re-evaluation of the mechanism responsible for the cellular uptake of the S4(13)-PV karyophilic cell-penetrating peptide. We report that the S4(13)-PV peptide is able to accumulate inside live cells very efficiently through a rapid, dose-dependent and non-toxic process, providing clear evidence that the cellular uptake of this peptide cannot be attributed to fixation artifacts. Comparative analysis of peptide uptake into mutant cells lacking heparan sulphate proteoglycans demonstrates that their presence at the cell surface facilitates the cellular uptake of the S4(13)-PV peptide, particularly at low peptide concentrations. Most importantly, our results clearly demonstrate that, in addition to endocytosis, which is only evident at low peptide concentrations, the efficient cellular uptake of the S4(13)-PV cell-penetrating peptide occurs mainly through an alternative, non-endocytic mechanism, most likely involving direct penetration across cell membranes.
细胞穿透肽已被证明可通过一种不依赖温度和能量的机制穿过真核细胞膜,该机制不涉及膜受体或转运蛋白。尽管细胞穿透肽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,但细胞摄取发生的机制仍不清楚。鉴于最近有报道表明细胞穿透肽的摄取是通过先前描述的内吞途径发生的,或者是固定假象的结果,我们对负责S4(13)-PV亲核细胞穿透肽细胞摄取的机制进行了严格的重新评估。我们报告说,S4(13)-PV肽能够通过快速、剂量依赖性和无毒的过程非常有效地在活细胞内积累,这清楚地证明该肽的细胞摄取不能归因于固定假象。对缺乏硫酸乙酰肝素蛋白聚糖的突变细胞中肽摄取的比较分析表明,它们在细胞表面的存在促进了S4(13)-PV肽的细胞摄取,特别是在低肽浓度下。最重要的是,我们的结果清楚地表明,除了仅在低肽浓度下才明显的内吞作用外,S4(13)-PV细胞穿透肽的有效细胞摄取主要通过另一种非内吞机制发生,很可能涉及直接穿透细胞膜。