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Single Lipid Molecule Dynamics on Supported Lipid Bilayers with Membrane Curvature

机译:具有膜曲率的脂质双分子层上的单脂质分子动力学

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摘要

The plasma membrane is a highly compartmentalized, dynamic material and this organization is essential for a wide variety of cellular processes. Nanoscale domains allow proteins to organize for cell signaling, endo- and exocytosis, and other essential processes. Even in the absence of proteins, lipids have the ability to organize into domains as a result of a variety of chemical and physical interactions. One feature of membranes that affects lipid domain formation is membrane curvature. To directly test the role of curvature in lipid sorting, we measured the accumulation of two similar lipids, 1,2-Dihexadecanoyl-sn-glycero-3-phosphoethanolamine (DHPE) and hexadecanoic acid (HDA), using a supported lipid bilayer that was assembled over a nanopatterned surface to obtain regions of membrane curvature. Both lipids studied contain 16 carbon, saturated tails and a head group tag for fluorescence microscopy measurements. The accumulation of lipids at curvatures ranging from 28 nm to 55 nm radii was measured and fluorescein labeled DHPE accumulated more than fluorescein labeled HDA at regions of membrane curvature. We then tested whether single biotinylated DHPE molecules sense curvature using single particle tracking methods. Similar to groups of fluorescein labeled DHPE accumulating at curvature, the dynamics of single molecules of biotinylated DHPE was also affected by membrane curvature and highly confined motion was observed.
机译:质膜是高度分隔的动态材料,这种组织对于各种各样的细胞过程至关重要。纳米域使蛋白质能够组织细胞信号传导,胞吞和胞吐作用以及其他必不可少的过程。即使没有蛋白质,由于多种化学和物理相互作用,脂质也具有组织成域的能力。影响脂质结构域形成的膜的一个特征是膜曲率。为了直接测试曲率在脂质分类中的作用,我们使用了一种支持的脂质双层,测量了两个相似的脂质,1,2-二十六烷酰基-sn-甘油-3-磷酸乙醇胺(DHPE)和十六烷酸(HDA)的积累。组装在纳米图案化的表面上以获得膜曲率的区域。研究的两种脂质均含有16个碳原子,饱和的尾巴和用于荧光显微镜测量的头基标签。测量了在曲率半径为28 nm至55 nm的范围内脂质的积聚,并且在膜曲率区域,荧光素标记的DHPE比荧光素标记的HDA积聚更多。然后,我们使用单个粒子跟踪方法测试了单个生物素化的DHPE分子是否感应曲率。类似于荧光素标记的DHPE在弯曲处积累的组,生物素化DHPE的单分子动力学也受到膜弯曲的影响,并观察到高度受限的运动。

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