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用于蛋白质组学分析的植物线粒体的分离与亚分级分离。

Isolation and subfractionation of plant mitochondria for proteomic analysis.

作者信息

Eubel Holger, Heazlewood Joshua L, Millar A Harvey

机构信息

ARC Centre of Excellence in Plant Energy Biology, The University of Western Australia, Perth, Australia.

出版信息

Methods Mol Biol. 2007;355:49-62. doi: 10.1385/1-59745-227-0:49.

Abstract

Mitochondria carry out a variety of biochemical processes in plant cells. Their primary role is the oxidation of organic acids via the tricarboxylic acid cycle and the synthesis of ATP coupled to the transfer of electrons from reduced NAD+ to O2 via the electron transport chain. However, they also perform many important secondary functions such as synthesis of nucleotides, amino acids, lipids, and vitamins, they contain their own genome and undertake transcription and translation by some unique mechanisms, they actively import proteins and metabolites from the cytosol by a complex set of carriers and membrane channels, they influence programmed cell death of plants, and they respond to cellular signals such as oxidative stress. To understand the full range of mitochondrial functions in plants, the mechanisms that govern their biogenesis, and the way in which mitochondrial activity is perceived by the nucleus requires precise information about the protein components of these organelles. Isolation of mitochondria to identify their proteomes and the changes in these proteomes during development and environmental stress treatments is already under way. In this chapter we provide methods for isolating mitochondria from different plant tissue types, advice on assessing purity and storage of mitochondrial samples, and approaches to fractionate mitochondria to separate their membranes and soluble compartments from each other for proteome analysis.

摘要

线粒体在植物细胞中执行多种生化过程。它们的主要作用是通过三羧酸循环氧化有机酸,并通过电子传递链将ATP的合成与电子从还原型NAD⁺转移到O₂相偶联。然而,它们还执行许多重要的次要功能,如核苷酸、氨基酸、脂质和维生素的合成,它们拥有自己的基因组并通过一些独特的机制进行转录和翻译,它们通过一套复杂的载体和膜通道从细胞质中主动导入蛋白质和代谢物,它们影响植物的程序性细胞死亡,并且它们对诸如氧化应激等细胞信号作出反应。为了全面了解植物中线粒体的功能、控制其生物发生的机制以及细胞核感知线粒体活性的方式,需要有关这些细胞器蛋白质成分的精确信息。分离线粒体以鉴定其蛋白质组以及在发育和环境胁迫处理期间这些蛋白质组的变化已经在进行中。在本章中,我们提供了从不同植物组织类型中分离线粒体的方法、评估线粒体样品纯度和储存的建议,以及将线粒体分级分离以将其膜和可溶性区室彼此分离用于蛋白质组分析的方法。

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