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哺乳动物高尔基体断层扫描研究的经验教训。

Lessons from tomographic studies of the mammalian Golgi.

作者信息

Marsh Brad J

机构信息

Institute for Molecular Bioscience, Centre for Microscopy and Microanalysis, and School of Molecular and Microbial Sciences, The University of Queensland, St. Lucia QLD 4072, Australia.

出版信息

Biochim Biophys Acta. 2005 Jul 10;1744(3):273-92. doi: 10.1016/j.bbamcr.2005.04.002.

Abstract

Basic structure studies of the biosynthetic machinery of the cell by electron microscopy (EM) have underpinned much of our fundamental knowledge in the areas of molecular cell biology and membrane traffic. Driven by our collective desire to understand how changes in the complex and dynamic structure of this enigmatic organelle relate to its pivotal roles in the cell, the comparatively high-resolution glimpses of the Golgi and other compartments of the secretory pathway offered to us through EM have helped to inspire the development and application of some of our most informative, complimentary (molecular, biochemical and genetic) approaches. Even so, no one has yet even come close to relating the basic molecular mechanisms of transport, through and from the Golgi, to its ultrastructure, to everybody's satisfaction. Over the past decade, EM tomography has afforded new insights into structure-function relationships of the Golgi and provoked a re-evaluation of older paradigms. By providing a set of tools for structurally dissecting cells at high-resolution in three-dimensions (3D), EM tomography has emerged as a method for studying molecular cell biology in situ. As we move rapidly toward the establishment of molecular atlases of organelles through advances in proteomics and genomics, tomographic studies of the Golgi offer the tantalizing possibility that one day, we will be able to map the spatio-temporal coordinates of Golgi-related proteins and lipids accurately in the context of 4D cellular space.

摘要

通过电子显微镜(EM)对细胞生物合成机制进行的基础结构研究,为我们在分子细胞生物学和膜运输领域的许多基础知识奠定了基础。出于我们共同的愿望,即了解这个神秘细胞器复杂而动态的结构变化如何与其在细胞中的关键作用相关联,通过电子显微镜为我们提供的对高尔基体和分泌途径其他区室的相对高分辨率的观察,激发了我们一些最具信息性、互补性(分子、生化和遗传)方法的开发和应用。即便如此,还没有人能够让每个人都满意地将通过高尔基体以及进出高尔基体的基本分子运输机制与其超微结构联系起来。在过去十年中,电子显微镜断层扫描为高尔基体的结构 - 功能关系提供了新的见解,并引发了对旧有范式的重新评估。通过提供一组在三维(3D)高分辨率下对细胞进行结构剖析的工具,电子显微镜断层扫描已成为一种原位研究分子细胞生物学的方法。随着我们通过蛋白质组学和基因组学的进展迅速迈向细胞器分子图谱的建立,对高尔基体的断层扫描研究提供了一种诱人的可能性,即有朝一日,我们将能够在四维细胞空间的背景下准确绘制高尔基体相关蛋白质和脂质的时空坐标。

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