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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Molecular studies of the gel to liquid-crystalline phase transition for fully hydrated DPPC and DPPE bilayers
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Molecular studies of the gel to liquid-crystalline phase transition for fully hydrated DPPC and DPPE bilayers

机译:完全水解DPPC和DPPE双层凝胶对液晶相转变的凝胶的分子研究

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Molecular dynamics simulations were used for a comprehensive study of the structural properties of saturated lipid bilayers, DPPC and DPPE, near the main phase transition. Though the chemical structure of DPPC and DPPE are largely similar (they only differ in the choline and ethanolamine groups), their transformation process from a gel to a liquid-crystalline state is contrasting. For DPPC, three distinct structures can be identified relative to the melting temperature (T-m): below T-m with "mixed" domains consisting of lipids that are tilted with partial overlap of the lipid tails between leaflet; near T-m with a slight increase in the average area per lipid, resulting in a rearrangement of the lipid tails and an increase in the bilayer thickness; and above Tm with unhindered lipid tails in random motion resulting in an increase in 'gauche formed and increase in the level of interdigitation between lipid leaflets. For DPPE, the structures identified were below T, with "ordered" domains consisting of slightly tilted lipid tails and non-overlapping lipid tails between leaflets, near T-m with minimal rearrangement of the lipids as the bilayer thickness reduces slightly with increasing temperature, and above T-m with unhindered lipid tails as that for DPPC. For DPPE, most of the lipid tails do not overlap as observed to DPPC, which is due to the tight packing of the DPPE molecules. The non-overlapping behavior of DPPE above T-m is confirmed from the density profile of the terminal carbon atoms in each leaflet, which shows a narrow distribution near the center of the bilayer core. This study also demonstrates that atomistic simulations are capable of capturing the phase transition behavior of lipid bilayers, providing a rich set of molecular and structural information at and near the transition state. (c) 2006 Elsevier B.V. All rights reserved.
机译:分子动力学模拟用于综合研究饱和脂质双层,DPPC和DPPE的结构性质,靠近主相转变。尽管DPPC和DPPE的化学结构在很大程度上(它们仅在胆碱和乙醇胺基团中不同),但它们从凝胶到液晶状态的转化过程是对比度。对于DPPC,可以相对于熔融温度(T-M)鉴定三种不同的结构:低于T-M,其与脂质组成的“混合”结构域,该脂质由小叶之间的脂质尾部的部分重叠倾斜;接近T-m略微增加,平均面积为每脂质,导致脂尾的重排和双层厚度的增加;并且在随机运动中具有不受阻尼的脂质尾部的TM,导致'Gauche形成的增加和脂肪小叶之间的间隙水平增加。对于DPPE,所识别的结构低于T,具有“有序的”结构域,其由略微倾斜的脂尾和小叶之间的非重叠脂质尾,在TM附近,随着双层厚度的较小,随着温度略微减少,脂质的最小重新排列在较高的温度下减少TM与受阻尼的脂质尾巴,因为DPPC。对于DPPE,大多数脂质尾部不会像DPPC那样重叠,这是由于DPPE分子的紧密填充。从每个宣传叶中的端子碳原子的密度分布确认了DPPE上方的非重叠行为,其示出了双层芯中心附近的窄分布。该研究还证明了原子模拟能够捕获脂质双层的相变行为,在过渡状态和附近提供丰富的分子和结构信息。 (c)2006 Elsevier B.v.保留所有权利。

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