Australian Research Council Centre of Excellence in Plant Energy Biology, University of Western Australia, Crawley 6009, Western Australia, Australia.
Plant Cell Environ. 2012 Feb;35(2):271-80. doi: 10.1111/j.1365-3040.2011.02293.x. Epub 2011 Mar 24.
Mitochondrial components dynamically change in response to environmental and developmental cues. However, the regulatory pathways that underlie these changes are largely unknown. A global analysis of changes in mitochondrial components at the transcript, protein and metabolite levels was undertaken, to gain a greater insight into how mitochondrial functions are regulated and respond to various internal or external cues. At the transcript level, large-scale changes in groups of genes suggest the presence of co-regulatory mechanisms for these components. Furthermore, the pathways that regulate these changes appear to be integrated into regulatory pathways that alter a variety of functions in cells. However, the changes in transcripts are not always observed at the protein or the metabolite level. This is likely to be due to post-transcriptional levels of regulation and also the fact that in-depth profiles, which have been obtained for transcripts from a variety of studies, are currently not available for proteins and metabolites. Thus, while transcripts for genes give us a picture of what the cells are 'thinking' in relation to mitochondrial components, some of these responses may be lost in translation.
线粒体成分会随环境和发育信号而动态变化。然而,这些变化背后的调节途径在很大程度上尚不清楚。本研究对转录本、蛋白质和代谢物水平的线粒体成分变化进行了全面分析,以期更深入地了解线粒体功能是如何受到各种内部或外部信号调控的。在转录本水平,大量基因群的变化表明这些成分存在共同的调控机制。此外,调节这些变化的途径似乎整合到了可改变细胞中多种功能的调控途径中。然而,在蛋白质或代谢物水平并不总是观察到转录本的变化。这可能是由于转录后水平的调控,以及目前还没有针对蛋白质和代谢物的各种研究中转录本的深入分析。因此,虽然与线粒体成分有关的基因转录本可以让我们了解细胞的“想法”,但其中一些反应可能会在翻译过程中丢失。