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Arrangement of Photosystem II and ATP Synthase in Chloroplast Membranes of Spinach and Pea

机译:菠菜和豌豆叶绿体膜中光系统II和ATP合酶的排列

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摘要

We used cryoelectron tomography to reveal the arrangements of photosystem II (PSII) and ATP synthase in vitreous sections of intact chloroplasts and plunge-frozen suspensions of isolated thylakoid membranes. We found that stroma and grana thylakoids are connected at the grana margins by staggered lamellar membrane protrusions. The stacking repeat of grana membranes in frozen-hydrated chloroplasts is 15.7 nm, with a 4.5-nm lumenal space and a 3.2-nm distance between the flat stromal surfaces. The chloroplast ATP synthase is confined to minimally curved regions at the grana end membranes and stroma lamellae, where it covers 20% of the surface area. In total, 85% of the ATP synthases are monomers and the remainder form random assemblies of two or more copies. Supercomplexes of PSII and light-harvesting complex II (LHCII) occasionally form ordered arrays in appressed grana thylakoids, whereas this order is lost in destacked membranes. In the ordered arrays, each membrane on either side of the stromal gap contains a two-dimensional crystal of supercomplexes, with the two lattices arranged such that PSII cores, LHCII trimers, and minor LHCs each face a complex of the same kind in the opposite membrane. Grana formation is likely to result from electrostatic interactions between these complexes across the stromal gap.
机译:我们使用低温电子层析成像技术揭示了完整叶绿体的玻璃体切片和分离的类囊体膜的急速冷冻悬浮液中光系统II(PSII)和ATP合酶的排列方式。我们发现,基质和格兰类囊体在层状边缘由交错的层状膜突出物相连。冷冻水合叶绿体中的颗粒膜堆叠重复长度为15.7 nm,腔腔空间为4.5 nm,平坦基质表面之间的距离为3.2 nm。叶绿体ATP合酶被限制在颗粒末端膜和基质片的最小弯曲区域,其覆盖了20%的表面积。总共85%的ATP合成酶是单体,其余的则是两个或多个拷贝的无规组装。 PSII和光捕获复合物II(LHCII)的超复合物有时在贴紧的类固兰类囊体中形成有序阵列,而此顺序在堆积的膜中丢失。在有序阵列中,基质间隙两侧的每个膜都包含一个二维的超复合物晶体,两个晶格的排列方式使得PSII核,LHCII三聚体和次要LHC各自面对相反类型的复合物膜。晶状体的形成很可能是由这些复合物之间跨基质间隙的静电相互作用引起的。

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