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MitoP2,一个线粒体蛋白质的综合数据库。

MitoP2, an integrated database for mitochondrial proteins.

作者信息

Prokisch Holger, Ahting Uwe

机构信息

Institute of Human Genetics, Technical University of Munich, Germany.

出版信息

Methods Mol Biol. 2007;372:573-86. doi: 10.1007/978-1-59745-365-3_39.

Abstract

The impact of mitochondria on several fundamental cellular processes is reflected in their involvement in the pathophysiology of common diseases such as Parkinson's disease, diabetes, and obesity and a wide range of monogenic disorders primarily associated with energy impairment or metabolic diseases. The importance of mitochondria is also reflected by the steep increase of proteins, which has been localized to this organelle. In yeast, more than 500 of the expected 700-800 mitochondrial proteins are already annotated. In the mammalian species, the expected numbers are estimated to be in the range of 1500-2000 proteins, and the currently annotated entries reach almost 700. In addition to the studies dealing with single proteins, there are many high-throughput approaches that improve the description of the mitochondrial proteome. They include computational predictions of signaling sequences, proteome mapping, mutant screening, expression profiling, protein-protein interaction, and cellular sublocalization studies. The MitoP2 database (http://www.mitop2.de/) was established to structure, explore, and customize the available data on mitochondrial proteins, functions, and diseases. MitoP2 provides a comprehensive picture of the mitochondrial proteome by focusing on (1) the orthology between species, including Saccharomyces cerevisiae, mouse, humans, and Arabidopsis thaliana; (2) the definition of mitochondrial reference sets in these species; (3) the integration of data predictive for mitochondrial localization or function stemming from genomewide approaches; (4) the allocation of a gateway for functional data from model systems and genetics of mitochondriopathies; and (5) the calculation of a combined score for each protein summarizing the indirect evidence for a mitochondrial localization. All data are accessible via search tools and linked to the original data source. By providing an overview of functional annotations from different databases, the MitoP2 database lends itself to genetic investigations of human mitochondriopathies.

摘要

线粒体对多个基本细胞过程的影响体现在它们参与常见疾病(如帕金森病、糖尿病和肥胖症)以及主要与能量损伤或代谢疾病相关的多种单基因疾病的病理生理学过程中。线粒体的重要性还体现在定位于该细胞器的蛋白质数量急剧增加。在酵母中,预期的700 - 800个线粒体蛋白质中已有500多个被注释。在哺乳动物物种中,预期数量估计在1500 - 2000个蛋白质范围内,目前注释的条目已接近700个。除了针对单个蛋白质的研究外,还有许多高通量方法可用于改善对线粒体蛋白质组的描述。这些方法包括信号序列的计算预测、蛋白质组图谱绘制、突变体筛选、表达谱分析、蛋白质 - 蛋白质相互作用以及细胞亚定位研究。MitoP2数据库(http://www.mitop2.de/)的建立是为了构建、探索和定制有关线粒体蛋白质、功能和疾病的现有数据。MitoP2通过关注以下方面提供了线粒体蛋白质组的全面图景:(1)物种间的直系同源关系,包括酿酒酵母、小鼠、人类和拟南芥;(2)这些物种中线粒体参考集的定义;(3)整合来自全基因组方法的预测线粒体定位或功能的数据;(4)为来自线粒体疾病模型系统和遗传学的功能数据分配一个通道;(5)计算每个蛋白质的综合得分,总结线粒体定位的间接证据。所有数据均可通过搜索工具获取,并与原始数据源链接。通过提供来自不同数据库的功能注释概述,MitoP2数据库有助于对人类线粒体疾病进行遗传学研究。

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