细胞毒性
化学
肽
细胞毒性T细胞
脂肪酸
立体化学
生物化学
体外
作者
Peng Zhang,Cui Jian,Shandong Jian,Qianqian Zhang,Xiaoliang Sun,Liqin Nie,Bobo Liu,Fengjiao Li,Jinting Li,Meiyan Liu,Songping Liang,Youlin Zeng,Zhonghua Liu
标识
DOI:10.1021/acs.jmedchem.9b01126
摘要
Peptide modification with fatty acids is an effective method to improve peptide performance. We previously investigated the fatty acid modification of R-lycosin-I, a cytotoxic peptide derived from lycosin-I from the venom of the spider Lycosa singoriensis. In this study, we further investigated the position effects of fatty acid modification of lycosin-I. Dodecanoic acid was covalently coupled to the α/ε-amino group of one of the seven Lys residues of lycosin-I, generating eight different lipopeptides. Although all the lipopeptides had significantly improved cytotoxicity compared with lycosin-I, they displayed different cytotoxic potencies and profiles, which might be explained by multifactors including charge, size, helicity, hydrophobicity, and so forth. Of the eight lipopeptides, L-C12 demonstrated highest cytotoxicity and antimetastasis activity in two-dimensional cells, tumor spheroids, subcutaneous transplantation mouse models, and experimental melanoma metastasis mouse models. Collectively, our finding indicated that fatty acid modification position plays important roles in physiochemical parameters and biological activities of cytotoxic peptides.
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