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胞后胞间连丝的结构和通透性,其缺乏细胞质套。

Architecture and permeability of post-cytokinesis plasmodesmata lacking cytoplasmic sleeves.

机构信息

Laboratory of Membrane Biogenesis, UMR5200 CNRS, University of Bordeaux, 71 Avenue Edouard Bourlaux, 33883 Villenave d'Ornon Cedex, France.

Institut Curie, Centre de Recherche, Bât. 112, Centre Universitaire, 91405 Orsay Cedex, France.

出版信息

Nat Plants. 2017 Jun 12;3:17082. doi: 10.1038/nplants.2017.82.

Abstract

Plasmodesmata are remarkable cellular machines responsible for the controlled exchange of proteins, small RNAs and signalling molecules between cells. They are lined by the plasma membrane (PM), contain a strand of tubular endoplasmic reticulum (ER), and the space between these two membranes is thought to control plasmodesmata permeability. Here, we have reconstructed plasmodesmata three-dimensional (3D) ultrastructure with an unprecedented level of 3D information using electron tomography. We show that within plasmodesmata, ER-PM contact sites undergo substantial remodelling events during cell differentiation. Instead of being open pores, post-cytokinesis plasmodesmata present such intimate ER-PM contact along the entire length of the pores that no intermembrane gap is visible. Later on, during cell expansion, the plasmodesmata pore widens and the two membranes separate, leaving a cytosolic sleeve spanned by tethers whose presence correlates with the appearance of the intermembrane gap. Surprisingly, the post-cytokinesis plasmodesmata allow diffusion of macromolecules despite the apparent lack of an open cytoplasmic sleeve, forcing the reassessment of the mechanisms that control plant cell-cell communication.

摘要

胞间连丝是一种负责在细胞间控制蛋白质、小 RNA 和信号分子交换的特殊细胞机器。它们由质膜(PM)排列而成,包含一段管状内质网(ER),这两层膜之间的空间被认为控制着胞间连丝的通透性。在这里,我们使用电子断层扫描术重建了具有空前 3D 信息水平的胞间连丝三维(3D)超微结构。我们发现,在细胞分化过程中,内质网-质膜接触点会发生实质性的重塑事件。胞间连丝在细胞分裂后不再是开放的孔道,而是在整个孔道长度上呈现出内质网-质膜的紧密接触,以至于看不到膜间隙。后来,在细胞扩张过程中,胞间连丝孔道变宽,两层膜分离,留下一个由连接蛋白构成的胞质套管,其存在与膜间隙的出现相关。令人惊讶的是,尽管细胞质套管似乎不存在,胞间连丝在细胞分裂后仍允许大分子扩散,这迫使我们重新评估控制植物细胞间通讯的机制。

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