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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >Organization of protein complexes and a mechanism for grana formation in photosynthetic membranes as revealed by cryo-electron microscopy
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Organization of protein complexes and a mechanism for grana formation in photosynthetic membranes as revealed by cryo-electron microscopy

机译:冷冻电子显微镜揭示的蛋白复合物的组织和光合膜中格兰娜形成的机制

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Plant and algal chloroplasts and their ultrastructure were one of the first specimens to be studied by microscopy, and their granular nature was first described by Van Leeuwenhoek in 1676. Here we have used cryo-electron tomography and three-dimensional reconstruction to resolve chloroplast ultrastructure at a level where individual protein complexes can be observed. The data reveal features of the ultrastructure which are consistent with a simple hypothesis for the generation of the characteristic stacked grana described by Leeuwenhoek. We find that stacked regions can be formed by invaginations of the 'sac-like' structure of the membrane. Two, or more, invaginations associate together to give stacks of membranes within the sac. In the tomograms, both the stacked and unstacked regions of the membrane display lateral heterogeneity in terms of the particles embedded in them. Unstacked regions display microdomains that are densely packed with CF1-CF0 proton ATPases that predominantly occupy parts where the diskshaped sacs curve at the periphery. Stacked regions display membranes packed with photosystem II complexes.
机译:植物和藻类的叶绿体及其超微结构是最早通过显微镜研究的标本之一,其颗粒性质最早是由Van Leeuwenhoek在1676年描述的。可以观察到单个蛋白质复合物的水平。数据揭示了超微结构的特征,这些特征与由Leeuwenhoek描述的用于生成特征性堆积谷物的简单假设相一致。我们发现可以通过膜的“囊状”结构的侵入来形成堆叠区域。两个或多个内陷结合在一起,在囊内形成一叠膜。在层析X线照片中,膜的堆叠区域和未堆叠区域在嵌入其中的颗粒方面均显示出横向异质性。未堆叠的区域显示出微区,这些微区被CF1-CF0质子ATPase密集堆积,主要占据了盘状囊在外围弯曲的部分。堆叠区域显示装有光系统II复合物的膜。

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