Engel Benjamin D, Schaffer Miroslava, Kuhn Cuellar Luis, Villa Elizabeth, Plitzko Jürgen M, Baumeister Wolfgang
Department of Molecular Structural Biology, Max Planck Institute of Biochemistry, Martinsried, Germany.
Elife. 2015 Jan 13;4:e04889. doi: 10.7554/eLife.04889.
Chloroplast function is orchestrated by the organelle's intricate architecture. By combining cryo-focused ion beam milling of vitreous Chlamydomonas cells with cryo-electron tomography, we acquired three-dimensional structures of the chloroplast in its native state within the cell. Chloroplast envelope inner membrane invaginations were frequently found in close association with thylakoid tips, and the tips of multiple thylakoid stacks converged at dynamic sites on the chloroplast envelope, implicating lipid transport in thylakoid biogenesis. Subtomogram averaging and nearest neighbor analysis revealed that RuBisCO complexes were hexagonally packed within the pyrenoid, with ~15 nm between their centers. Thylakoid stacks and the pyrenoid were connected by cylindrical pyrenoid tubules, physically bridging the sites of light-dependent photosynthesis and light-independent carbon fixation. Multiple parallel minitubules were bundled within each pyrenoid tubule, possibly serving as conduits for the targeted one-dimensional diffusion of small molecules such as ATP and sugars between the chloroplast stroma and the pyrenoid matrix.
叶绿体的功能由该细胞器复杂的结构精心编排。通过将玻璃态衣藻细胞的低温聚焦离子束铣削与低温电子断层扫描相结合,我们获得了细胞内天然状态下叶绿体的三维结构。经常发现叶绿体被膜内膜内陷与类囊体尖端紧密相连,并且多个类囊体堆叠的尖端在叶绿体被膜上的动态位点汇聚,这表明脂质转运参与类囊体生物发生。亚断层平均和最近邻分析表明,核酮糖-1,5-二磷酸羧化酶/加氧酶(RuBisCO)复合物在蛋白核内呈六边形排列,其中心间距约为15纳米。类囊体堆叠和蛋白核通过圆柱形的蛋白核小管相连,在物理上连接了光依赖光合作用和光独立碳固定的位点。每个蛋白核小管内都捆绑着多条平行的微管,可能作为小分子(如ATP和糖类)在叶绿体基质和蛋白核基质之间进行靶向一维扩散的通道。