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用单分子力谱研究与模型和生物膜相互作用的α-螺旋膜活性肽的特异性和作用机制。

Specificity and mechanism of action of alpha-helical membrane-active peptides interacting with model and biological membranes by single-molecule force spectroscopy.

机构信息

Key Laboratory for Molecular Enzymology and Engineering of the Ministry of Education, Jilin University, Changchun 130012, China.

School of Life Sciences, Jilin University, Changchun 130012, China.

出版信息

Sci Rep. 2016 Jul 1;6:29145. doi: 10.1038/srep29145.

Abstract

In this study, to systematically investigate the targeting specificity of membrane-active peptides on different types of cell membranes, we evaluated the effects of peptides on different large unilamellar vesicles mimicking prokaryotic, normal eukaryotic, and cancer cell membranes by single-molecule force spectroscopy and spectrum technology. We revealed that cationic membrane-active peptides can exclusively target negatively charged prokaryotic and cancer cell model membranes rather than normal eukaryotic cell model membranes. Using Acholeplasma laidlawii, 3T3-L1, and HeLa cells to represent prokaryotic cells, normal eukaryotic cells, and cancer cells in atomic force microscopy experiments, respectively, we further studied that the single-molecule targeting interaction between peptides and biological membranes. Antimicrobial and anticancer activities of peptides exhibited strong correlations with the interaction probability determined by single-molecule force spectroscopy, which illustrates strong correlations of peptide biological activities and peptide hydrophobicity and charge. Peptide specificity significantly depends on the lipid compositions of different cell membranes, which validates the de novo design of peptide therapeutics against bacteria and cancers.

摘要

在这项研究中,为了系统地研究膜活性肽在不同类型细胞膜上的靶向特异性,我们通过单分子力谱和光谱技术评估了肽对不同模拟原核生物、正常真核生物和癌细胞膜的大单分子囊泡的影响。我们揭示了阳离子膜活性肽可以专门针对带负电荷的原核和癌细胞模型膜,而不是正常真核细胞模型膜。在原子力显微镜实验中,我们分别使用 Achaetomomas laidlawii、3T3-L1 和 HeLa 细胞来代表原核细胞、正常真核细胞和癌细胞,进一步研究了肽与生物膜之间的单分子靶向相互作用。肽的抗菌和抗癌活性与单分子力谱测定的相互作用概率之间存在很强的相关性,这说明了肽生物活性与肽疏水性和荷电性之间存在很强的相关性。肽的特异性显著取决于不同细胞膜的脂质组成,这验证了针对细菌和癌症的新型肽治疗药物的从头设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39f1/4929710/ea03478eb0ac/srep29145-f1.jpg

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