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Roles of Inter leaflet Coupling and Hydrophobic Mismatch in Lipid Membrane Phase-Separation Kinetics

机译:小叶间偶联和疏水错配在脂质膜相分离动力学中的作用

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摘要

Characterizing the nanoscale dynamic organization within lipid bilayer membranes is central to our understanding of cell membranes at a molecular level. We investigate phase separation and communication across leaflets in ternary lipid bilayers, including saturated lipids with between 12 and 20 carbons per tail. Coarse-grained molecular dynamics simulations reveal a novel two-step kinetics due to hydrophobic mismatch, in which the initial response of the apposed leaflets upon quenching is to increase local asymmetry (antiregistra-tion), followed by dominance of symmetry (registration) as the bilayer equilibrates. Antiregistration can become thermody-namically preferred if domain size is restricted below ~20 nm, with implications for the symmetry of rafts and nanoclusters in cell membranes, which have similar reported sizes. We relate our findings to theory derived from a semimicroscopic model in which the leaflets experience a "direct" area-dependent coupling, and an "indirect" coupling that arises from hydrophobic mismatch and is most important at domain boundaries. Registered phases differ in composition from antiregistered phases, consistent with a direct coupling between the leaflets. Increased hydrophobic mismatch purifies the phases, suggesting that it contributes to the molecule-level lipid immiscibility. Our results demonstrate an interplay of competing interleaflet couplings that affect phase compositions and kinetics, and lead to a length scale that can influence lateral and transverse bilayer organization within cells.
机译:表征脂质双层膜内的纳米级动态组织是我们在分子水平上了解细胞膜的关键。我们调查三元脂质双层,包括每个尾部具有12至20个碳之间的饱和脂质的小叶的相分离和交流。粗粒分子动力学模拟揭示了由于疏水性不匹配而产生的新颖的两步动力学,其中,伴随淬火的小叶的初始响应是增加局部不对称性(抗配准性),然后是对称性(配准性)占主导地位。双层平衡。如果域大小限制在约20 nm以下,则抗注册可能会成为热学上首选的方法,这可能会影响筏板和细胞膜中纳米簇的对称性,这与报道的大小相似。我们将我们的发现与从半微观模型中得出的理论联系起来,在半微观模型中,小叶经历了“直接”的区域依赖性耦合,以及由于疏水性不匹配而产生的“间接”耦合,在区域边界最重要。登记期与反登记期在组成上有所不同,这与小叶之间的直接耦合一致。疏水性不匹配的增加纯化了相,表明它有助于分子水平的脂质不溶混性。我们的研究结果表明竞争性小叶间偶联相互作用会影响相组成和动力学,并导致可影响细胞内横向和横向双层组织的长度尺度。

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  • 来源
    《Journal of the American Chemical Society》 |2016年第36期|11633-11642|共10页
  • 作者单位

    Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, U.K.,Nuffield Department of Medicine, John Radcliffe Hospital, University of Oxford, Headley Way, Oxford, OX3 9DU, U.K.;

    Department of Physics, Institute for Soft Matter Synthesis and Metrology, Georgetown University, 37th and O Streets, N.W., Washington, D.C. 20057, United States,The Francis Crick Institute, Lincoln's Inn Fields Laboratories, 44 Lincoln's Inn Fields, London WC2A 3LY, U.K.;

    Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, U.K.;

    Department of Physics, Institute for Soft Matter Synthesis and Metrology, Georgetown University, 37th and O Streets, N.W., Washington, D.C. 20057, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:08:55

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