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Ripples and the formation of anisotropic lipid domains: imaging two-component supported double bilayers by atomic force microscopy.

机译:波纹和各向异性脂质域的形成:通过原子力显微镜对两组分支持的双层进行成像。

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摘要

Direct visualization of the fluid-phase/ordered-phase domain structure in mica-supported bilayers composed of 1,2-dimyristoyl-sn-glycero-3-phosphocholine/1,2-distearoyl-sn-glycero-3-phosphocholine mixtures is performed with atomic force microscopy. The system studied is a double bilayer supported on a mica surface in which the top bilayer (which is not in direct contact with the mica) is visualized as a function of temperature. Because the top bilayer is not as restricted by the interactions with the surface as single supported bilayers, its behavior is more similar to a free-standing bilayer. Intriguing straight-edged anisotropic fluid-phase domains were observed in the fluid-phase/ordered-phase coexistence temperature range, which resemble the fluid-phase/ordered-phase domain patterns observed in giant unilamellar vesicles composed of such phospholipid mixtures. With the high resolution provided by atomic force microscopy, we investigated the origin of these anisotropic lipid domain patterns, and found that ripple phase formation is directly responsible for the anisotropic nature of these domains. The nucleation and growth of fluid-phase domains are found to be directed by the presence of ripples. In particular, the fluid-phase domains elongate parallel to the ripples. The results show that ripple phase formation may have implications for domain formation in biological systems.
机译:在由1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱/ 1,2-二硬脂酰基-sn-甘油-3-磷酸胆碱混合物组成的云母支持的双层中,直接观察液相/有序相域结构用原子力显微镜。研究的系统是支撑在云母表面上的双层膜,其中顶层双层膜(与云母不直接接触)可视为温度的函数。因为顶层双层不像单个支撑双层那样受与表面的交互作用的限制,所以它的行为与独立式双层更相似。在液相/有序相共存温度范围内观察到有趣的直角各向异性液相域,类似于在由此类磷脂混合物组成的巨大单层囊泡中观察到的液相/有序相畴模式。借助原子力显微镜提供的高分辨率,我们研究了这些各向异性脂质域模式的起源,并发现波纹相的形成直接负责这些域的各向异性。发现液相域的成核和生长是由波纹的存在直接引起的。特别地,流体相区域平行于波纹伸长。结果表明,波纹相的形成可能对生物系统中结构域的形成有影响。

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