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Investigation of photosynthetic membrane structure using atomic force microscopy

机译:利用原子力显微镜研究光合膜的结构

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Photosynthetic processes, including light capture, electron transfer, and energy conversion, are not only ensured by the activities of individual photosynthetic complexes but also substantially determined and regulated by the composition and assemblyof the overall photosynthetic apparatus at the supramolecular level. In recent years, atomic force microscopy (AFM) has matured as a unique and powerful tool for directly assessing the supramolecular assembly of integral membrane protein complexes in their native membrane environment at submolecular resolution. This review highlights the major contributions and advances of AFM studies to our understanding of the structure of the bacterial photosynthetic machinery and its regulatory arrangement during chromatic adaptation. AFM topographs of other biological membrane systems and potential future applications of AFM are also discussed.
机译:光合作用过程,包括光捕获,电子转移和能量转换,不仅由各个光合作用配合物的活性来确保,而且在超分子水平上基本上由整个光合作用装置的组成和组装决定和调节。近年来,原子力显微镜(AFM)已经成为一种独特而强大的工具,可以直接在亚分子分辨率下在其天然膜环境中直接评估整合膜蛋白复合物的超分子组装。这篇综述突出了原子力显微镜研究对我们理解细菌光合机制的结构及其在色彩适应过程中的调控安排的主要贡献和进展。还讨论了其他生物膜系统的AFM地形图以及AFM的潜在未来应用。

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