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Nanoscale resolution in infrared imaging of protein-containing lipid membranes

机译:纳米级分辨率的红外成像protein-containing脂质膜

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The precise imaging of biomolecular entities contributes to an understanding of the relationship between their structure and function. However, the resolution of conventional infrared microscopic imaging is diffraction limited and does not exceed a few micrometres. Atomic force microscopy, on the other hand, can detect infrared absorption down to the sub-micrometer level. In the present report, we demonstrate that for multi-bilayer lipid samples containing the plant photosynthetic pigment-protein complex LHCII, the resolution of this latter technique can be better than 20 nm. Such a high resolution is attributable to two factors: (i) the relatively high infrared absorption by the complex that is integrated perpendicular to the plane of the multilayer film, and (ii) the distinctly different mechanical properties and thermal conductivity of the lipid and protein components of the sample.
机译:生物分子的精确成像的实体导致的理解他们的结构和之间的关系函数。红外显微成像的衍射有限且不超过几微米。原子力显微镜,另一方面,可以检测红外吸收到sub-micrometer水平。证明multi-bilayer脂质样品含有植物光合作用LHCII pigment-protein复杂,解决这后一种技术可以比20海里。这样的高分辨率是归因于两个因素:(i)相对较高的红外线吸收集成的复杂多层垂直于这个平面电影,和(2)截然不同力学性能和热导率脂质和蛋白质成分的样品。

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