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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Biophysical studies of the interactions between 14-mer and 21-mer model amphipathic peptides and membranes: Insights on their modes of action
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Biophysical studies of the interactions between 14-mer and 21-mer model amphipathic peptides and membranes: Insights on their modes of action

机译:14-mer和21-mer模型两亲性肽和膜之间相互作用的生物物理研究:它们的作用方式的见解

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We have investigated the interactions between synthetic amphipathic peptides and zwitterionic model membranes. Peptides with 14 and 21 amino acids composed of leucines and phenylalanines modified by the addition of crown ethers have been synthesized. The 14-mer and 21-mer peptides both possess a helical amphipathic structure as revealed by circular dichroism. To shed light on their mechanism of membrane interaction, different complementary biophysical techniques have been used such as circular dichroism, fluorescence, membrane conductivity measurement and NMR spectroscopy. Results obtained by these different techniques show that the 14-mer peptide is a membrane perturbator that facilitate the leakage of species such as calcein and Na ions, while the 21-mer peptide acts as an ion channel. P-31 solid-state NMR experiments on multilamellar vesicles reveal that the dynamics and/or orientation of the polar headgroups are greatly affected by the presence of the peptides. Similar results have also been obtained in mechanically oriented DLPC and DMPC bilayers where different acyl chain lengths seem to play a role in the 2 interaction. On the other hand, H-2 NMR experiments on multilamellar vesicles demonstrate that the acyl chain order is affected differently by the two peptides. Based on these studies, mechanisms of action are proposed for the 14-mer and 21-mer peptides with zwitterionic membranes. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们已经研究了合成的两亲性肽和两性离子模型膜之间的相互作用。已经合成了具有14和21个氨基酸的肽,该肽由通过添加冠醚而修饰的亮氨酸和苯丙氨酸组成。 14-mer和21-mer肽均具有螺旋两亲性结构,如圆二色性所揭示。为了阐明其膜相互作用的机理,已使用了不同的互补生物物理技术,例如圆二色性,荧光,膜电导率测量和NMR光谱。通过这些不同技术获得的结果表明,14-mer肽是一种膜扰动剂,可促进钙黄绿素和Na离子等物质的泄漏,而21-mer肽则充当离子通道。在多层囊泡上进行的P-31固态NMR实验表明,极性首基的动力学和/或取向受肽段的存在影响很大。在机械取向的DLPC和DMPC双层中也获得了相似的结果,其中不同的酰基链长度似乎在2相互作用中起作用。另一方面,在多层囊泡上的H-2 NMR实验表明,酰基链顺序受两种肽的影响不同。基于这些研究,提出了具有两性离子膜的14-mer和21-mer肽的作用机理。 (c)2006 Elsevier B.V.保留所有权利。

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