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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Lipid flip-flop vs. lateral diffusion in the relaxation of hemifusion diaphragms
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Lipid flip-flop vs. lateral diffusion in the relaxation of hemifusion diaphragms

机译:血液触发器与偏移偏移在偏离膈肌中的侧向扩散

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摘要

Molecular dynamics simulations of a solvent-free coarse-grained lipid model are used to characterize the mechanisms by which lipid-bilayer hemifusion diaphragm (HD) intermediates relax, across a range of global compositions of negative intrinsic curvature (NIC) lipids and neutral-curvature lipids. At low concentrations of NIC lipids, rapid fission produces a double bilayer end state through a lateral diffusion-based mechanism enabled by spontaneous rim-pore defects. At moderately higher NIC lipid concentrations, rim pores are absent and stable leaflet three-junctions persist, revealing an HD relaxation mechanism entirely reliant on lipid flip-flop, and end states that are either stable fusion pores or stable HD's. These fusogenic systems exhibit dynamics highly dependent on NIC lipid concentration via an underlying sensitivity of flip-flop rates for neutral lipids on NIC lipid concentration. This work illustrates that HD dynamics may be altered through regulation of lipid composition in the immediate three-junction region. This work further highlights the potential role of flippases in biological fusion and the importance of lipid composition on fusion dynamics.
机译:无溶剂粗粒子脂质模型的分子动力学模拟用于表征脂质双层偏离隔膜(HD)中间体放松的机制,横跨一系列的阴性内在曲率(NIC)脂质和中性曲率的全局组成脂质。在低浓度的NIC脂质下,快速裂变通过通过自发的螺纹孔缺陷而实现的基于横向扩散的机构产生双双层末端状态。在适度更高的NIC脂质浓度下,边缘孔隙不存在且稳定的小叶三角点持续存在,揭示了一种完全依赖于脂质触发器的高清弛豫机制,并且最终状态是稳定的融合孔或稳定的HD。这些融合系统具有高度依赖于NIC脂质浓度的动态,通过对NIC脂质浓度的中性脂质的触发器速率的潜在敏感性。该工作说明了HD动态可以通过在立即三结区域中的脂质组合物调节来改变。这项工作进一步凸显了唾液中的潜在作用以及脂质组合物对融合动力学的重要性。

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