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高度尾部不对称的脂质相互交错并导致双向有序排列。

Highly tail-asymmetric lipids interdigitate and cause bidirectional ordering.

作者信息

Ozturk Tugba N, Ferron Thomas J, He Wei, Schwarz Benjamin, Weiss Thomas M, Fischer Nicholas O, Rasley Amy, Carpenter Timothy S, Bosio Catharine M, Ingólfsson Helgi I

机构信息

Biosciences and Biotechnology Division, Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, CA, USA.

Material Science Division, Physical and Life Sciences Directorate, Lawrence Livermore National Laboratory, Livermore, CA, USA.

出版信息

J Lipid Res. 2025 May;66(5):100797. doi: 10.1016/j.jlr.2025.100797. Epub 2025 Apr 4.

Abstract

Phospholipids form structurally and compositionally diverse membranes. A less studied type of compositional diversity involves phospholipid tail variety. Some phospholipids contain two acyl tails which differ in length. These tail-asymmetric lipids are shown to contribute to temperature sensitivity, oxygen adaptability, and membrane fluidity. Membranes of a highly virulent intracellular bacterium, Francisella tularensis, contain highly tail-asymmetric 1-lignoceroyl-2-decanoyl-sn-glycero-3-phosphatidylethanolamine (XJPE) lipids which were previously shown to inhibit inflammatory responses in host cells. XJPE tails have unusually high asymmetry, and how they contribute to membrane properties on a molecular level is unknown. Here, we use small angle X-ray scattering and molecular dynamics simulations to investigate how varying XJPE ratios alters properties of simple membranes. Our results demonstrate that at high concentration they promote liquid-to-gel transition in otherwise liquid membranes, while at low concentration they are tolerated well, minimally altering membrane properties. In liquid membranes, XJPE lipids dynamically adopt two main conformations; with the long tail extended into the opposing leaflet or bent-back residing in its own leaflet. When added to both leaflets XJPE primarily adopts an extended confirmation, while asymmetric addition results in more bent-back orientations. The former increases tail ordering and the latter decreases it. XJPE tails adopt different conformations that induce composition- and leaflet-dependent bidirectional effect on membrane fluidity and this suggests that Francisella tularensis could use tail asymmetry to facilitate vesicle fusion and destabilize host cells. The effect of tail-asymmetric lipids on complex membranes should be further investigated to reveal the regulatory roles of high tail asymmetry.

摘要

磷脂形成结构和组成多样的膜。一种研究较少的组成多样性类型涉及磷脂尾部的多样性。一些磷脂含有两条长度不同的酰基尾部。这些尾部不对称的脂质被证明与温度敏感性、氧气适应性和膜流动性有关。高毒力细胞内细菌土拉弗朗西斯菌的膜含有高度尾部不对称的1-木蜡酰基-2-癸酰基-sn-甘油-3-磷脂酰乙醇胺(XJPE)脂质,先前已证明其可抑制宿主细胞中的炎症反应。XJPE尾部具有异常高的不对称性,其在分子水平上如何影响膜的性质尚不清楚。在这里,我们使用小角X射线散射和分子动力学模拟来研究不同XJPE比例如何改变简单膜的性质。我们的结果表明,在高浓度下,它们会促进原本为液态的膜发生液-凝胶转变,而在低浓度下,它们能很好地被耐受,对膜性质的改变最小。在液态膜中,XJPE脂质动态地呈现两种主要构象;长尾部延伸到相对的小叶中或向后弯曲并位于其自身的小叶中。当添加到两个小叶时,XJPE主要呈现伸展构象,而不对称添加则导致更多向后弯曲的取向。前者增加尾部有序性,后者降低尾部有序性。XJPE尾部呈现不同的构象,对膜流动性产生依赖于组成和小叶的双向影响,这表明土拉弗朗西斯菌可能利用尾部不对称来促进囊泡融合并破坏宿主细胞的稳定性。应进一步研究尾部不对称脂质对复杂膜的影响,以揭示高尾部不对称的调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/277e/12135366/d7576bad7528/ga1.jpg

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