Department of Chemistry, University of Warwick, Coventry, CV4 7AL, UK.
Chem Soc Rev. 2010 Jun;39(6):2146-57. doi: 10.1039/b912944h. Epub 2010 Mar 10.
In recent years there has been an abundance of research into the potential of helical peptides to influence cell function. These peptides have been used to achieve a variety of different outcomes from cell repair to cell death, depending upon the peptide sequence and the nature of its interactions with cell membranes and membrane proteins. In this critical review, we summarise several mechanisms by which helical peptides, acting as either transporters, inhibitors, agonists or antibiotics, can have significant effects on cell membranes and can radically affect the internal mechanisms of the cell. The various approaches to peptide design are discussed, including the role of naturally-occurring proteins in the design of these helical peptides and current breakthroughs in the use of non-natural (and therefore more stable) peptide scaffolds. Most importantly, the current successful applications of these peptides, and their potential uses in the field of medicine, are reviewed (131 references).
近年来,人们对螺旋肽影响细胞功能的潜力进行了大量研究。这些肽已被用于实现从细胞修复到细胞死亡等各种不同的结果,具体取决于肽序列及其与细胞膜和膜蛋白相互作用的性质。在这篇重要的综述中,我们总结了螺旋肽作为载体、抑制剂、激动剂或抗生素发挥作用时能够对细胞膜产生重大影响并能够彻底改变细胞内部机制的几种机制。讨论了各种肽设计方法,包括天然存在的蛋白质在这些螺旋肽设计中的作用以及在使用非天然(因此更稳定)肽支架方面的最新突破。最重要的是,回顾了这些肽的当前应用及其在医学领域的潜在用途(引用 131 篇)。