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蜂毒肽肽段的排列及二级结构对环形孔道形成和稳定性的影响。

Influence of the arrangement and secondary structure of melittin peptides on the formation and stability of toroidal pores.

作者信息

Irudayam Sheeba J, Berkowitz Max L

机构信息

Department of Chemistry, University of North Carolina at Chapel Hill, 131 South Road, Chapel Hill, NC 27599, USA.

出版信息

Biochim Biophys Acta. 2011 Sep;1808(9):2258-66. doi: 10.1016/j.bbamem.2011.04.021. Epub 2011 May 24.

Abstract

Melittin interactions with lipid bilayers and melittin formed pores are extensively studied to understand the mechanism of the toroidal pore formation. Early experimental studies suggested that melittin peptide molecules are anchored by their positively charged residues located next to the C-terminus to only one leaflet of the lipid bilayer (asymmetric arrangement). However, the recent non-linear spectroscopic experiment suggests a symmetric arrangement of the peptides with the C-terminus of the peptides anchored to both bilayers. Therefore, we present here a computational study that compares the effect of symmetric and asymmetric arrangements of melittin peptides in the toroidal pore formation. We also investigate the role of the peptide secondary structure during the pore formation. Two sets of the symmetric and asymmetric pores are prepared, one with a helical peptide from the crystal structure and the other set with a less helical peptide. We observe a stable toroidal pore being formed only in the system with a symmetric arrangement of the less helical peptides. Based on the simulation results we propose that the symmetric arrangement of the peptides might be more favorable than the asymmetric arrangement, and that the helical secondary structure is not a prerequisite for the formation of the toroidal pore.

摘要

为了理解环形孔形成的机制,人们对蜂毒肽与脂质双层的相互作用以及蜂毒肽形成的孔进行了广泛研究。早期的实验研究表明,蜂毒肽分子通过其位于C末端附近的带正电荷残基仅锚定在脂质双层的一个小叶上(不对称排列)。然而,最近的非线性光谱实验表明,肽的C末端锚定在两个双层上,肽呈现对称排列。因此,我们在此展示一项计算研究,该研究比较了蜂毒肽对称和不对称排列在环形孔形成中的作用。我们还研究了肽二级结构在孔形成过程中的作用。制备了两组对称和不对称的孔,一组是具有晶体结构的螺旋肽,另一组是螺旋性较低的肽。我们观察到仅在螺旋性较低的肽对称排列的系统中形成了稳定的环形孔。基于模拟结果,我们提出肽的对称排列可能比不对称排列更有利,并且螺旋二级结构不是形成环形孔的先决条件。

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