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Cationicity and Hydrophobicity Enhance the Cytotoxic Potency of Phoratoxin C Anticancer Peptide Analogues against Triple Negative Breast Cancer Cells

机译:阳离子性和疏水性增强了 Phoratoxin C 抗癌肽类似物对三阴性乳腺癌细胞的细胞毒性效力

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Background: Anticancer Peptides (ACPs) have received increasing attention as a promising class of novel anticancer agents owing to their potent and rapid cytotoxic properties. In this study, we aim to investigate the effects of cationicity and hydrophobicity in modulating the cytotoxicity of PtxC, a class of ACP from the leafy mistletoe Phoradendron tomentosum against the MDA-MB-231 and Vero cells. Methods: We designed a series of four PtxC analogues (PA1 – PA4) by residual substitutions with specific amino acids to introduce the specific charge and hydrophobicity alterations to the analogues. The cytotoxicity strength of the PtxC analogues on MDA-MB-231 and Vero cells was tested using MTT assay 24 hours post-treatment. Results: PA1, PA2, and PA4 displayed marked increases in cytotoxicity against both MDA-MB- 231 and Vero cells and can be ranked in the order of PA2 > PA4 > PA1 > PtxC > PA3. Sequence- activity relationship analyses of the designed analogues showed that an increase in the level of cationicity and hydrophobicity correlated well with the enhanced cytotoxic activity of PtxC analogues. This was observed with PA1 (netC +8) and PA2 (netC +10) in comparison to PtxC (netC +7). A similar finding was observed for PA4 (GRAVY +0.070) in contrast to PtxC (GRAVY -0.339). Three-dimensional modelling predicted a double α-helix structure in PtxC class of ACP. The larger first helix in PA2 and PA4 was suggested to be responsible for the enhanced cytotoxicity observed. Conclusion: The critical role of cationicity and hydrophobicity in enhancing cytotoxicity of PtxC class of ACPs was clearly demonstrated in our study. The current findings could be extrapolated to benefit peptide design strategy in other classes of ACPs toward the discovery of highly potent ACPs against cancer cells as potential novel therapeutic agents.
机译:背景:抗癌肽 (ACP) 因其有效和快速的细胞毒性特性而作为一类有前途的新型抗癌剂而受到越来越多的关注。在这项研究中,我们旨在研究阳离子性和疏水性在调节 PtxC 细胞毒性方面的影响,PtxC 是一类来自叶槲寄生 Phoradendron tomentosum 的 ACP 对 MDA-MB-231 和 Vero 细胞的影响。方法:我们设计了一系列四种PtxC类似物(PA1 – PA4),通过与特定氨基酸的残余取代,将比电荷和疏水性改变引入类似物。在处理后 24 小时使用 MTT 测定法测试了 PtxC 类似物对 MDA-MB-231 和 Vero 细胞的细胞毒性强度。结果:PA1、PA2和PA4对MDA-MB-231和Vero细胞的细胞毒性均显著增加,可按PA2>PA4>PA1>PtxC>PA3的顺序排列。所设计类似物的序列-活性关系分析表明,阳离子性和疏水性水平的增加与PtxC类似物的细胞毒性活性增强密切相关。与 PtxC (netC +7) 相比,PA1 (netC +8) 和 PA2 (netC +10) 观察到了这一点。PA4 (GRAVY +0.070) 与 PtxC (GRAVY -0.339) 相比,观察到类似的发现。三维模型预测了ACP的PtxC类为双α螺旋结构。PA2 和 PA4 中较大的第一螺旋被认为是观察到的细胞毒性增强的原因。结论:阳离子性和疏水性在增强PtxC类ACPs细胞毒性中的关键作用已在本研究中得到明确证明。目前的研究结果可以外推到有利于其他类别的ACPs的肽设计策略,以发现针对癌细胞的高效ACPs作为潜在的新型治疗剂。

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