Khemaissa Sonia, Bauzá Antonio, Lesur Émilie, Illien Françoise, Sagan Sandrine, Frontera Antonio, Walrant Astrid
Sorbonne Université, École Normale supérieure, PSL University, CNRS, CPCV Chimie Physique et Chimie du Vivant, Paris, 75005, France.
Department de Química, Universitat de les Illes Balears, Palma de Mallorca, Baleares, Spain.
Chemistry. 2025 Jul 22;31(41):e202501138. doi: 10.1002/chem.202501138. Epub 2025 Jul 4.
Cell penetrating peptides (CPPs) are small sequences that can cross cell membranes. Arg and Trp are highly prevalent amino acids in natural and synthetic efficient CPP sequences. In particular, Trp is essential and cannot be substituted by other hydrophobic or aromatic amino acids. The aim of the present study is to decipher the role of Trp in synthetic Arg/Trp CPP sequences. To do so, a small peptide library in which this residue was substituted by other natural or nonnatural amino acids was designed. Internalization of these peptides in cells was evaluated, and it appeared that combining aromaticity and hydrophobicity in the presence of Arg residues leads to enhanced internalization. The study of the interaction of these peptides with model lipid membranes revealed that the modulation of hydrophobicity promoted insertion in bilayers but had little impact on the binding affinity. On the other hand, more hydrophobic substitutes of Trp led to more favorable binding enthalpies to heparin. With density functional theory (DFT) analysis, we suggest that ion-pair···π interactions between the aromatic ring and the ion pair formed by the positively charged Arg and the negatively charged cell surface groups can be established and could be at the origin of the unique internalization properties of Trp-containing Arg-rich CPPs.
细胞穿透肽(CPPs)是能够穿过细胞膜的短序列。精氨酸(Arg)和色氨酸(Trp)在天然和合成的高效CPP序列中是高度普遍存在的氨基酸。特别是,色氨酸是必不可少的,不能被其他疏水或芳香族氨基酸替代。本研究的目的是解读色氨酸在合成的精氨酸/色氨酸CPP序列中的作用。为此,设计了一个小肽库,其中该残基被其他天然或非天然氨基酸取代。评估了这些肽在细胞中的内化情况,结果表明,在存在精氨酸残基的情况下,结合芳香性和疏水性会导致内化增强。对这些肽与模型脂质膜相互作用的研究表明,疏水性的调节促进了其插入双层膜,但对结合亲和力影响不大。另一方面,色氨酸的更多疏水取代物导致与肝素的结合焓更有利。通过密度泛函理论(DFT)分析,我们认为芳香环与由带正电荷的精氨酸和带负电荷的细胞表面基团形成的离子对之间可以建立离子对···π相互作用,这可能是含色氨酸的富含精氨酸的CPPs独特内化特性的起源。