School of Pharmaceutical Sciences, Shenzhen Campus of Sun Yat-Sen University, Shenzhen 518107, China.
Department of Pathology, The Eighth Affiliated Hospital, Sun Yat-sen University, Shenzhen 518033, China.
Toxins (Basel). 2022 Jun 22;14(7):428. doi: 10.3390/toxins14070428.
Melittin is a membrane-active peptide with strong anticancer activity against various cancers. Despite decades of research, the role of the singular Trp in the anticancer activity and selectivity of melittin remains poorly understood. Here, we propose a theranostic solution based on the substitution of Trp19 with a noncanonical fluorescent amino acid (Dap). The introduction of Dap residue in melittin stabilized the helical structure of the peptide, as evaluated by circular dichroism spectra and molecular dynamics simulations. In vitro hemolytic and anticancer activity assays revealed that introducing Dap residue in melittin changed its mode of action with the cell membrane, resulting in reduced hemolytic toxicity and an improved the selectivity index (SI), with up to a five-fold increase compared to melittin. In vitro fluorescence imaging of Dap-labeled melittin (MEL) in cancer cells demonstrated high membrane-penetrating activity, with strong nuclear and nucleolar localization ability. These findings provide implications for novel anticancer therapies based on Trp-substituted designs and nuclear/nucleolar targeted therapy.
蜂毒素是一种具有强抗癌活性的膜活性肽,对各种癌症都有作用。尽管已经进行了数十年的研究,但单个色氨酸在蜂毒素抗癌活性和选择性中的作用仍知之甚少。在这里,我们提出了一种基于色氨酸 19 位取代的治疗诊断一体化策略,用非典型荧光氨基酸(Dap)取代。圆二色光谱和分子动力学模拟评估表明,Dap 残基的引入稳定了蜂毒素的螺旋结构。体外溶血和抗癌活性测定表明,Dap 残基的引入改变了蜂毒素与细胞膜的作用方式,导致溶血毒性降低,选择性指数(SI)提高,与蜂毒素相比,提高了五倍。在癌细胞中,Dap 标记的蜂毒素(MEL)的体外荧光成像显示出高的膜穿透活性,具有强烈的核和核仁定位能力。这些发现为基于色氨酸取代设计和核/核仁靶向治疗的新型抗癌疗法提供了启示。