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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Bilayer interaction and localization of cell penetrating peptides with model membranes: A comparative study of a human calcitonin (hCT)-derived peptide with pVEC and pAntp(43-58)
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Bilayer interaction and localization of cell penetrating peptides with model membranes: A comparative study of a human calcitonin (hCT)-derived peptide with pVEC and pAntp(43-58)

机译:细胞渗透肽与模型膜的双层相互作用和定位:人降钙素(hCT)衍生肽与pVEC和pAntp的比较研究(43-58)

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摘要

Cell-penetrating peptides (CPPs) are able to translocate problematic therapeutic cargoes across cellular membranes. The exact mechanisms of translocation are still under investigation. However, evidence for endocytic uptake is increasing. We investigated the interactions of CPPs with phospholipid bilayers as first step of translocation. To this purpose, we employed four independent techniques, comprising (i) liposome buffer equilibrium dialysis, (ii) Trp fluorescence quenching, (iii) fluorescence polarization, and (iv) determination of zeta-potentials. Using unilamellar vesicles (LUVs) of different phospholipid composition, we compared weakly cationic human calcitonin (hCT)-derived peptides with the oligocationic CPPs pVEC and penetratin (pAntp). Apparent partition coefficients of hCT-derived peptides in neutral POPC LUVs were dependent on amino acid composition and secondary structure; partitioning in negatively charged POPC/POPG (80:20) LUVs was increased and mainly governed by electrostatic interactions. For hCT(9-32) and its derivatives, D values raised from about 100-200 in POPC to about 1000 to 1500 when negatively charged lipids were present. Localization profiles of CPPs obtained by Tip fluorescence quenching were dependent on the charge density of LUVs. In POPC/POPG, hCT-derived CPPs were located on the bilayer surface, whereas pVEC and pAntp resided deeper in the membrane. In POPG LUVs, an increase of fluorescence polarization was observed for pVEC and pAntp but not for hCT-derived peptides. Generally, we found strong peptide-phospholipid interactions, especially when negatively charged lipids were present. (c) 2005 Elsevier B.V. All rights reserved.
机译:细胞穿透肽(CPPs)能够将有问题的治疗性货物转运穿过细胞膜。易位的确切机制仍在调查中。然而,内吞摄取的证据正在增加。我们调查了CPPs与磷脂双层的相互作用,作为易位的第一步。为此,我们采用了四种独立的技术,包括(i)脂质体缓冲液平衡透析,(ii)Trp荧光猝灭,(iii)荧光极化和(iv)ζ电位测定。我们使用不同磷脂成分的单层囊泡(LUV),将弱阳离子人降钙素(hCT)衍生的肽与寡阳离子CPPs pVEC和渗透肽(pAntp)进行了比较。 hCT衍生肽在中性POPC LUV中的表观分配系数取决于氨基酸组成和二级结构。带负电荷的POPC / POPG(80:20)LUV中的分配增加,并且主要受静电相互作用控制。对于hCT(9-32)及其衍生物,当存在带负电荷的脂质时,D值从POPC中的约100-200升高到约1000-1500。通过尖端荧光猝灭获得的CPPs的定位曲线取决于LUV的电荷密度。在POPC / POPG中,hCT衍生的CPP位于双层表面上,而pVEC和pAntp则位于膜的更深处。在POPG LUV中,观察到pVEC和pAntp的荧光偏振增加,而hCT衍生肽则没有。通常,我们发现强烈的肽-磷脂相互作用,尤其是当存在带负电荷的脂质时。 (c)2005 Elsevier B.V.保留所有权利。

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