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Two‐dimensional crystals: a powerful approach to assess structure, function and dynamics of membrane proteins

机译:二维晶体:一种评估膜蛋白结构,功能和动力学的强大方法

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>Electron crystallography and atomic force microscopy allow the study of two-dimensional membrane protein crystals. While electron crystallography provides atomic scale three-dimensional density maps, atomic force microscopy gives insight into the surface structure and dynamics at sub-nanometer resolution. Importantly, the membrane protein studied is in its native environment and its function can be assessed directly. The approach allows both the atomic structure of the membrane protein and the dynamics of its surface to be analyzed. In this way, the function-related conformational changes can be assessed, thus providing a detailed insight on the molecular mechanisms of essential biological processes.
机译:电子晶体学和原子力显微镜可以研究二维膜蛋白晶体。电子晶体学提供原子尺度的三维密度图,而原子力显微镜则可以洞察亚纳米分辨率下的表面结构和动力学。重要的是,研究的膜蛋白处于其天然环境中,可以直接评估其功能。该方法既可以分析膜蛋白的原子结构,也可以分析其表面的动力学。通过这种方式,可以评估与功能有关的构象变化,从而提供对基本生物学过程的分子机制的详细了解。

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