Leontiadou Hari, Mark Alan E, Marrink Siewert J
Department of Biophysical Chemistry, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.
J Am Chem Soc. 2006 Sep 20;128(37):12156-61. doi: 10.1021/ja062927q.
Molecular dynamics simulations of the magainin MG-H2 peptide interacting with a model phospholipid membrane have been used to investigate the mechanism by which antimicrobial peptides act. Multiple copies of the peptide were randomly placed in solution close to the membrane. The peptide readily bound to the membrane, and above a certain concentration, the peptide was observed to cooperatively induce the formation of a nanometer-sized, toroidally shaped pore in the bilayer. In sharp contrast with the commonly accepted model of a toroidal pore, only one peptide was typically found near the center of the pore. The remaining peptides lay close to the edge of the pore, maintaining a predominantly parallel orientation with respect to the membrane.
麦加宁MG-H2肽与模型磷脂膜相互作用的分子动力学模拟已被用于研究抗菌肽的作用机制。将多个肽拷贝随机置于靠近膜的溶液中。该肽很容易与膜结合,并且在一定浓度以上,观察到该肽协同诱导双层膜中形成纳米尺寸的环形孔。与普遍接受的环形孔模型形成鲜明对比的是,通常在孔的中心附近只发现一个肽。其余的肽靠近孔的边缘,相对于膜保持主要为平行的取向。