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首页> 外文期刊>Angewandte Chemie >A Tailor-Made Specific Anion-Binding Motif in the Side Chain Transforms a Tetrapeptide into an Efficient Vector for Gene Delivery
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A Tailor-Made Specific Anion-Binding Motif in the Side Chain Transforms a Tetrapeptide into an Efficient Vector for Gene Delivery

机译:侧链中的量身定制的特定阴离子结合基序将四肽转化为高效的基因传递载体

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摘要

Arginine-rich cell-penetrating peptides are widely utilized as vectors for gene delivery. However, their transfection efficacy still needs to be optimized. To accomplish this, guanidinocarbonylpyrrole groups, which are tailor-made anion binding sites, were introduced into the side chains of tetralysine to obtain the peptide analogue 1. In contrast to the common strategy of adding a lipophilic tail to peptide vectors, this novel method most likely enhances transfection efficacy through more specific interactions between the binding motifs and DNA or the cell membrane. Tetrapeptide analogue 1 is thus the smallest peptidic transfection vector that has been reported to date. The transfection efficacy of 1, which on average has less than two positive charges under physiological conditions, is even better than that of polyethylenimine (PEI). Furthermore, 1 exhibits only negligible cytotoxicity, which makes it an interesting candidate for further development.
机译:富含精氨酸的细胞穿透肽被广泛用作基因递送的载体。但是,它们的转染功效仍需要优化。为此,将量身定制的阴离子结合位点胍基羰基吡咯基团引入到四赖氨酸的侧链中以获得肽类似物1。与向肽载体添加亲脂性尾巴的通常策略相反,该新方法最可能通过结合基序与DNA或细胞膜之间更特异性的相互作用增强转染效率。因此,四肽类似物1是迄今为止已报道的最小的肽转染载体。 1的转染效率在生理条件下平均少于两个正电荷,甚至比聚乙烯亚胺(PEI)更好。此外,1仅表现出微不足道的细胞毒性,这使其成为进一步发展的有趣候选物。

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