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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Ion channel stability of Gramicidin A in lipid bilayers: Effect of hydrophobic mismatch
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Ion channel stability of Gramicidin A in lipid bilayers: Effect of hydrophobic mismatch

机译:脂质双层中Gramicidin A的离子通道稳定性:疏水错配的影响

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Hydrophobic mismatch which is defined as the difference between the lipid hydrophobic thickness and the peptide hydrophobic length is known to be responsible in altering the lipid/protein dynamics. Gramicidin A (gA), a 15 residue fi helical peptide which is well recognized to form ion conducting channels in lipid bilayer, may change its structure and function in a hydrophobic mismatched condition. We have performed molecular dynamics simulations of gA dimer in phospholipid bilayers to investigate whether or not the conversion from channel to non-channel form of gA dimer would occur under extreme negative hydrophobic mismatch. By varying the length of lipid bilayers from DLPC (1, 2-Dilauroyl-sn-glycero-3-phosphocholine) to DAPC (1, 2-Diarachidoyl-sn-glycero-3-phosphocholine), a broad range of mismatch was considered from nearly matching to extremely negative. Our simulations revealed that though the ion-channel conformation is retained by gA under a lesser mismatched situation, in extremely negative mismatched situation, in addition to bilayer thinning, the conformation of gA is changed and converted to a non-channel one. Our results demonstrate that although the channel conformation of Gramicidin A is the most stable structure, it is possible for gA to change , its conformation from channel to non-channel depending upon the local environment of host bilayers.
机译:疏水性错配定义为脂质疏水性厚度与肽疏水性长度之间的差异,是导致脂质/蛋白质动力学变化的原因。 Gramicidin A(gA)是一种15残基的螺旋肽,已被公认在脂质双层中形成离子传导通道,在疏水错配条件下可能会改变其结构和功能。我们已经在磷脂双层中进行了gA二聚体的分子动力学模拟,以研究在极端的负疏水失配下是否会发生从通道形式的gA二聚体向非通道形式的转化。通过改变脂质双层的长度,从DLPC(1,2-Dilauroyl-sn-glycero-3-phosphocholine)到DAPC(1,2-Diarachidoyl-sn-glycero-3-phosphocholine),可以考虑广泛的错配几乎匹配到极度负面。我们的模拟显示,尽管在较小的失配情况下gA保留了离子通道构象,但在极负失配的情况下,除了双层减薄外,gA的构型也发生了变化并转换为非通道构象。我们的结果表明,尽管Gramicidin A的通道构象是最稳定的结构,但gA可能会发生变化,取决于宿主双层的局部环境,gA的构象会从通道变为非通道。

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