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首页> 外文期刊>Bulletin of the Korean Chemical Society >Molecular Dynamics Simulations of Hemolytic Peptide 8-Lysin Interacting with a POPC Lipid Bilayer
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Molecular Dynamics Simulations of Hemolytic Peptide 8-Lysin Interacting with a POPC Lipid Bilayer

机译:溶血肽8-赖氨酸与POPC脂质双层相互作用的分子动力学模拟。

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摘要

The binding interaction between a hemolytic peptide 8-lysin and a zwitterionic lipid bilayer POPC was investigated through a series of molecular dynamics (MD) simulations. 8-Lysin is a 26-residue, amphipathic, a-helical peptide toxin secreted by Staphylococcus aureus. Unlike typical antimicrobial peptides, 8-lysin has no net charge and it is often found in aggregated forms in solution even at low concentration. Our study showed that only the monomer, not dimer, inserts into the bilayer interior. The monomer is preferentially attracted toward the membrane with its hydrophilic side facing the bilayer surface. However, peptide insertion requires the opposite orientation where the hydrophobic side of peptide points toward the membrane interior. Such orientation allows the charged residues, Lys and Asp, to have stable salt bridges with the lipid head-group while the hydrophobic residues are buried deeper in the hydrophobic lipid interior. Our simulations suggest that breaking these salt bridges is the key step for the monomer to be fully inserted into the center of lipid bilayer and, possibly, to translocate across the membrane.
机译:通过一系列分子动力学(MD)模拟研究了溶血肽8-溶素和两性离子脂质双层POPC之间的结合相互作用。 8-赖氨酸是由金黄色葡萄球菌分泌的26个残基的两亲性a螺旋肽毒素。与典型的抗菌肽不同,8-lysin没有净电荷,即使在低浓度下也经常以聚集形式存在于溶液中。我们的研究表明,只有单体而不是二聚体才能插入双层内部。单体优选以其亲水侧朝向双层表面的方式被吸引至膜。但是,肽插入需要相反的方向,即肽的疏水侧指向膜内部。这种取向使得带电荷的残基Lys和Asp与脂质头基具有稳定的盐桥,而疏水残基更深地埋在疏水脂质内部。我们的模拟表明,打破这些盐桥是使单体完全插入脂质双层中心并可能跨膜转运的关键步骤。

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