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通过原子力显微镜观察光合细菌膜的组成部分及其原位组织结构。

Watching the components of photosynthetic bacterial membranes and their in situ organisation by atomic force microscopy.

作者信息

Scheuring Simon, Lévy Daniel, Rigaud Jean-Louis

机构信息

Institut Curie, UMR-CNRS 168 and LRC-CEA 34V, 11 rue Pierre et Marie Curie, 75231 Paris Cedex 05, France.

出版信息

Biochim Biophys Acta. 2005 Jun 30;1712(2):109-27. doi: 10.1016/j.bbamem.2005.04.005.

Abstract

The atomic force microscope has developed into a powerful tool in structural biology allowing information to be acquired at submolecular resolution on the protruding structures of membrane proteins. It is now a complementary technique to X-ray crystallography and electron microscopy for structure determination of individual membrane proteins after extraction, purification and reconstitution into lipid bilayers. Moving on from the structures of individual components of biological membranes, atomic force microscopy has recently been demonstrated to be a unique tool to identify in situ the individual components of multi-protein assemblies and to study the supramolecular architecture of these components allowing the efficient performance of a complex biological function. Here, recent atomic force microscopy studies of native membranes of different photosynthetic bacteria with different polypeptide contents are reviewed. Technology, advantages, feasibilities, restrictions and limits of atomic force microscopy for the acquisition of highly resolved images of up to 10 A lateral resolution under native conditions are discussed. From a biological point of view, the new insights contributed by the images are analysed and discussed in the context of the strongly debated organisation of the interconnected network of membrane-associated chlorophyll-protein complexes composing the photosynthetic apparatus in different species of purple bacteria.

摘要

原子力显微镜已发展成为结构生物学中的一种强大工具,能够在亚分子分辨率下获取膜蛋白突出结构的信息。现在,它是一种与X射线晶体学和电子显微镜互补的技术,用于在将单个膜蛋白提取、纯化并重构到脂质双层后确定其结构。从生物膜单个组分的结构研究进一步发展,原子力显微镜最近已被证明是一种独特的工具,可原位识别多蛋白组装体的单个组分,并研究这些组分的超分子结构,从而实现复杂生物功能的高效执行。在此,综述了近期对具有不同多肽含量的不同光合细菌天然膜的原子力显微镜研究。讨论了原子力显微镜在天然条件下获取横向分辨率高达10埃的高分辨率图像的技术、优势、可行性、限制和局限。从生物学角度出发,在关于构成不同紫色细菌光合装置的膜相关叶绿素 - 蛋白复合物相互连接网络的组织方式存在激烈争论的背景下,分析和讨论了这些图像所提供的新见解。

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