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在埃(Å)分辨率下对脂质双层上单个固有水化层进行直接成像。

Direct imaging of individual intrinsic hydration layers on lipid bilayers at Angstrom resolution.

作者信息

Fukuma Takeshi, Higgins Michael J, Jarvis Suzanne P

机构信息

Centre for Research on Adaptive Nanostructures and Nanodevices, Trinity College Dublin, Dublin 2, Ireland.

出版信息

Biophys J. 2007 May 15;92(10):3603-9. doi: 10.1529/biophysj.106.100651. Epub 2007 Feb 26.

Abstract

The interactions between water and biological molecules have the potential to influence the structure, dynamics, and function of biological systems, hence the importance of revealing the nature of these interactions in relation to the local biochemical environment. We have investigated the structuring of water at the interface of supported dipalmitoylphosphatidylcholine bilayers in the gel phase in phosphate buffer solution using frequency modulation atomic force microscopy (FM-AFM). We present experimental results supporting the existence of intrinsic (i.e., surface-induced) hydration layers adjacent to the bilayer. The force versus distance curves measured between the bilayer and the AFM tip show oscillatory force profiles with a peak spacing of 0.28 nm, indicative of the existence of up to two hydration layers next to the membrane surface. These oscillatory force profiles reveal the molecular-scale origin of the hydration force that has been observed between two apposing lipid bilayers. Furthermore, FM-AFM imaging at the water/lipid interface visualizes individual hydration layers in three dimensions, with molecular-scale corrugations corresponding to the lipid headgroups. The results demonstrate that the intrinsic hydration layers are stable enough to present multiple energy barriers to approaching nanoscale objects, such as proteins and solvated ions, and are expected to affect membrane permeability and transport.

摘要

水与生物分子之间的相互作用有可能影响生物系统的结构、动力学和功能,因此揭示这些相互作用与局部生化环境的关系至关重要。我们使用调频原子力显微镜(FM-AFM)研究了在磷酸盐缓冲溶液中凝胶相的支持双棕榈酰磷脂酰胆碱双层膜界面处水的结构。我们给出的实验结果支持了在双层膜附近存在固有(即表面诱导)水化层的观点。在双层膜和AFM探针之间测量的力与距离曲线显示出振荡力分布,其峰值间距为0.28纳米,这表明在膜表面附近存在多达两个水化层。这些振荡力分布揭示了在两个相对的脂质双层之间观察到的水化力的分子尺度起源。此外,在水/脂质界面处的FM-AFM成像以三维方式显示了各个水化层,其分子尺度的波纹对应于脂质头部基团。结果表明,固有水化层足够稳定,能够对接近的纳米级物体(如蛋白质和溶剂化离子)呈现多个能量屏障,并有望影响膜的通透性和运输。

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