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神经元中内质网和其他膜之间的接触。

Contacts between the endoplasmic reticulum and other membranes in neurons.

机构信息

Department of Neuroscience, Yale University School of Medicine, New Haven, CT 06510.

Department of Cell Biology, Yale University School of Medicine, New Haven, CT 06510.

出版信息

Proc Natl Acad Sci U S A. 2017 Jun 13;114(24):E4859-E4867. doi: 10.1073/pnas.1701078114. Epub 2017 May 30.

Abstract

Close appositions between the membrane of the endoplasmic reticulum (ER) and other intracellular membranes have important functions in cell physiology. These include lipid homeostasis, regulation of Ca dynamics, and control of organelle biogenesis and dynamics. Although these membrane contacts have previously been observed in neurons, their distribution and abundance have not been systematically analyzed. Here, we have used focused ion beam-scanning electron microscopy to generate 3D reconstructions of intracellular organelles and their membrane appositions involving the ER (distance ≤30 nm) in different neuronal compartments. ER-plasma membrane (PM) contacts were particularly abundant in cell bodies, with large, flat ER cisternae apposed to the PM, sometimes with a notably narrow lumen (thin ER). Smaller ER-PM contacts occurred throughout dendrites, axons, and in axon terminals. ER contacts with mitochondria were abundant in all compartments, with the ER often forming a network that embraced mitochondria. Small focal contacts were also observed with tubulovesicular structures, likely to be endosomes, and with sparse multivesicular bodies and lysosomes found in our reconstructions. Our study provides an anatomical reference for interpreting information about interorganelle communication in neurons emerging from functional and biochemical studies.

摘要

内质网膜(ER)与其他细胞内膜之间的紧密毗邻在细胞生理学中具有重要功能。这些功能包括脂质稳态、Ca 动力学调节以及细胞器发生和动态的控制。尽管这些膜接触以前在神经元中被观察到,但它们的分布和丰度尚未得到系统分析。在这里,我们使用聚焦离子束扫描电子显微镜生成了不同神经元区室中涉及 ER(距离≤30nm)的细胞内细胞器及其膜毗邻的 3D 重建。ER-质膜(PM)接触在细胞体中特别丰富,大而平坦的 ER 潴泡与 PM 毗邻,有时腔明显狭窄(薄 ER)。较小的 ER-PM 接触发生在树突、轴突和轴突末梢中。ER 与线粒体的接触在所有区室中都很丰富,ER 通常形成一个包围线粒体的网络。还观察到与管状囊泡结构的小焦点接触,可能是内体,以及在我们的重建中发现的稀疏多泡体和溶酶体。我们的研究为从功能和生化研究中出现的神经元中细胞器间通讯的解释提供了解剖学参考。

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