Division of Medicinal and Natural Products Chemistry, College of Pharmacy, University of Iowa, Iowa City, Iowa, USA.
J Pept Sci. 2022 Aug;28(8):e3404. doi: 10.1002/psc.3404. Epub 2022 Feb 2.
Melittin is a 26-amino acid amphiphilic alpha-helical peptide derived from honeybee venom. Prior studies have incorporated melittin into non-viral delivery systems to effect endosomal escape of DNA nanoparticles and improve transfection efficiency. Recent advances have led to the development of two newer melittin analogues, MelP5 and Macrolittin 70, with improved pore formation in lipid bilayers while possessing fewer positive charges relative to natural melittin. Consequently, MelP5 and Macrolittin 70 were conjugated through a disulfide bond to a DNA binding polyacridine peptide. The resulting peptide conjugates were used to prepare DNA nanoparticles to compare their relative endosomolytic potency by transfection of HepG2 cells. Melittin and MelP5 conjugates were equally potent at mediating in vitro gene transfer, whereas PEGylation of DNA nanoparticles revealed improved transfection with MelP5 relative to melittin. The results demonstrate the ability to substitute a potent, reduced-charge analogue of melittin to improve overall DNA nanoparticle biocompatibility needed for in vivo testing.
蜂毒素是一种 26 个氨基酸组成的两亲性α螺旋肽,来源于蜜蜂毒液。先前的研究已经将蜂毒素纳入非病毒传递系统,以实现 DNA 纳米颗粒的内体逃逸,并提高转染效率。最近的进展导致了两种新型蜂毒素类似物,MelP5 和 Macrolittin 70 的开发,它们在脂质双层中形成孔的能力得到了改善,而相对于天然蜂毒素,正电荷数却减少了。因此,MelP5 和 Macrolittin 70 通过二硫键与 DNA 结合的聚吖啶肽连接。所得的肽缀合物被用于制备 DNA 纳米颗粒,以通过 HepG2 细胞的转染来比较它们相对的溶酶体分解能力。蜂毒素和 MelP5 缀合物在介导体外基因转移方面同样有效,而 DNA 纳米颗粒的 PEG 化显示出相对于蜂毒素,MelP5 的转染效果得到了改善。结果表明,能够替代一种有效的、带较少电荷的蜂毒素类似物来提高体内试验所需的 DNA 纳米颗粒的整体生物相容性。