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叶绿体蛋白质组学突出了脂代谢的亚细胞区室化。

Chloroplast proteomics highlights the subcellular compartmentation of lipid metabolism.

机构信息

Laboratoire de Physiologie Cellulaire Végétale, UMR 5168, CEA, CNRS, INRA, Université Joseph Fourer, iRTSV, CEA-Grenoble, 38054 Grenoble-cedex 9, France.

出版信息

Prog Lipid Res. 2010 Apr;49(2):128-58. doi: 10.1016/j.plipres.2009.10.003. Epub 2009 Oct 30.

Abstract

Recent advances in the proteomic field have allowed high throughput experiments to be conducted on chloroplast samples and the data are available in several databases such as the Plant Protein Database (PPDB), or the SubCellular Proteomic Database (SUBA). However, the accurate localization of many proteins that were identified in different subplastidial compartments often remains hypothetical, thus making quantitative proteomics important for going a step further into the knowledge of Arabidopsis thaliana chloroplast proteins with regard to their accurate localization within the chloroplast. Spectral counting, a semi-quantitative proteomic strategy based on accurate mass and time tags (AMT), was used to build up AT_CHLORO, a comprehensive chloroplast proteome database with curated subplastidial localization. In this review, we focus on about a hundred enzymes involved in fatty acid biosynthesis, export and metabolism (desaturation and oxylipin metabolism), in the synthesis of chloroplast-specific glycerolipids either with a eukaryotic or a prokaryotic structure. Two main chloroplast compartments play a major role in lipid biosynthesis: the initial steps of fatty acid biosynthesis take place in the stroma, then the envelope membranes concentrate most of the proteins involved in chloroplast glycerolipid metabolism.

摘要

近年来,蛋白质组学领域的进展使得对叶绿体样本进行高通量实验成为可能,并且这些数据可在多个数据库中获得,如植物蛋白质数据库(PPDB)或亚细胞蛋白质组数据库(SUBA)。然而,在不同亚细胞器中鉴定出的许多蛋白质的准确定位仍然是假设性的,因此定量蛋白质组学对于进一步了解拟南芥叶绿体蛋白质在叶绿体中的准确定位非常重要。基于精确质量和时间标记(AMT)的半定量蛋白质组学策略——光谱计数,被用于构建 AT_CHLORO,这是一个带有经过校对的亚细胞器定位的综合叶绿体蛋白质组数据库。在这篇综述中,我们重点介绍了大约一百种参与脂肪酸生物合成、出口和代谢(去饱和和氧化脂代谢)以及叶绿体特异性甘油脂质合成的酶,这些酶具有真核或原核结构。两个主要的叶绿体隔室在脂质生物合成中起着主要作用:脂肪酸生物合成的初始步骤发生在基质中,然后包膜膜集中了大多数参与叶绿体甘油脂质代谢的蛋白质。

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