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MitoGenesisDB: an expression data mining tool to explore spatio-temporal dynamics of mitochondrial biogenesis

机译:MitoGenesisDB:一种表达数据挖掘工具用于探索线粒体生物发生的时空动态

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摘要

Mitochondria constitute complex and flexible cellular entities, which play crucial roles in normal and pathological cell conditions. The database MitoGenesisDB focuses on the dynamic of mitochondrial protein formation through global mRNA analyses. Three main parameters confer a global view of mitochondrial biogenesis: (i) time-course of mRNA production in highly synchronized yeast cell cultures, (ii) microarray analyses of mRNA localization that define translation sites and (iii) mRNA transcription rate and stability which characterize genes that are more dependent on post-transcriptional regulation processes. MitoGenesisDB integrates and establishes cross-comparisons between these data. Several model organisms can be analyzed via orthologous relationships between interspecies genes. More generally this database supports the ‘post-transcriptional operon’ model, which postulates that eukaryotes co-regulate related mRNAs based on their functional organization in ribonucleoprotein complexes. MitoGenesisDB allows identifying such groups of post-trancriptionally regulated genes and is thus a useful tool to analyze the complex relationships between transcriptional and post-transcriptional regulation processes. The case of respiratory chain assembly factors illustrates this point. The MitoGenesisDB interface is available at .
机译:线粒体构成复杂而灵活的细胞实体,它们在正常和病理性细胞状况中起关键作用。数据库MitoGenesisDB专注于通过全局mRNA分析的线粒体蛋白质形成动态。三个主要参数赋予了线粒体生物发生的全局视图:(i)在高度同步的酵母细胞培养物中产生mRNA的时间过程;(ii)定义翻译位点的mRNA定位的微阵列分析;以及(iii)表征特征的mRNA转录速率和稳定性更加依赖转录后调控过程的基因。 MitoGenesisDB整合并建立了这些数据之间的交叉比较。可以通过种间基因之间的直系关系分析几种模式生物。更广泛地说,该数据库支持“转录后操纵子”模型,该模型假定真核生物根据其在核糖核蛋白复合物中的功能组织共同调节相关的mRNA。 MitoGenesisDB可以识别此类转录后调控基因,因此是分析转录和转录后调控过程之间复杂关系的有用工具。呼吸链装配因素的情况说明了这一点。可从访问MitoGenesisDB接口。

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