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质体蛋白质组学

Plastid proteomics.

作者信息

van Wijk Klaas J

机构信息

Department of Plant Biology, Emerson Hall 332, Cornell University, Ithaca, NY 14853, USA.

出版信息

Plant Physiol Biochem. 2004 Dec;42(12):963-77. doi: 10.1016/j.plaphy.2004.10.015. Epub 2005 Jan 18.

Abstract

Plastids are essential organelles present in virtually all cells in plants and in green algae. The proteomes of plastids, and in particular of chloroplasts, have received significant amounts of attention in recent years. Various fractionation and mass spectrometry (MS) techniques have been applied to catalogue the chloroplast proteome and its membrane compartments. Neural network and hidden Markov models, in combination with experimentally derived filters, were used to try to predict the chloroplast subproteomes. Some of the many protein-protein interaction, as well as post-translational modifications have been characterized. Nevertheless, our understanding of the chloroplast proteome and its dynamics is very incomplete. Rapid improvements and wide-scale implementation of MS and new tools for comparative proteomics will undoubtedly accelerate this understanding in the near future. Proteomics studies often generate a large amount of data and these data are only meaningful if they can be easily accessed via the 'world-wide-web' and connected to other types of biological information. The plastid proteome data base (PPDB at http://www.ppdb.tc.cornell.edu/) and other web resources are discussed. This review will briefly summarize recent experimental and theoretical efforts, attempt to translate these data into the functions of the chloroplast and outline expectations and possibilities for (comparative) chloroplast proteomics.

摘要

质体是植物和绿藻几乎所有细胞中都存在的重要细胞器。近年来,质体的蛋白质组,尤其是叶绿体的蛋白质组受到了广泛关注。各种分级分离和质谱(MS)技术已被应用于对叶绿体蛋白质组及其膜区室进行编目。神经网络和隐马尔可夫模型与实验得出的筛选条件相结合,用于尝试预测叶绿体亚蛋白质组。众多蛋白质-蛋白质相互作用以及翻译后修饰中的一些已得到表征。然而,我们对叶绿体蛋白质组及其动态变化的理解仍非常不完整。质谱技术和比较蛋白质组学新工具的快速改进与广泛应用无疑将在不久的将来加速这一理解。蛋白质组学研究常常产生大量数据,而只有当这些数据能够通过“万维网”轻松获取并与其他类型的生物学信息相连接时,它们才具有意义。文中讨论了质体蛋白质组数据库(http://www.ppdb.tc.cornell.edu/上的PPDB)和其他网络资源。本综述将简要总结近期的实验和理论研究成果,尝试将这些数据转化为叶绿体的功能,并概述(比较)叶绿体蛋白质组学的期望和可能性。

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