Institute for Systems Biology, Seattle, Washington, USA.
PLoS One. 2010 Aug 4;5(8):e11953. doi: 10.1371/journal.pone.0011953.
Peroxisomes are intracellular organelles that house a number of diverse metabolic processes, notably those required for beta-oxidation of fatty acids. Peroxisomes biogenesis can be induced by the presence of peroxisome proliferators, including fatty acids, which activate complex cellular programs that underlie the induction process. Here, we used multi-parameter quantitative phenotype analyses of an arrayed mutant collection of yeast cells induced to proliferate peroxisomes, to establish a comprehensive inventory of genes required for peroxisome induction and function. The assays employed include growth in the presence of fatty acids, and confocal imaging and flow cytometry through the induction process. In addition to the classical phenotypes associated with loss of peroxisomal functions, these studies identified 169 genes required for robust signaling, transcription, normal peroxisomal development and morphologies, and transmission of peroxisomes to daughter cells. These gene products are localized throughout the cell, and many have indirect connections to peroxisome function. By integration with extant data sets, we present a total of 211 genes linked to peroxisome biogenesis and highlight the complex networks through which information flows during peroxisome biogenesis and function.
过氧化物酶体是细胞内的细胞器,其中包含许多不同的代谢过程,特别是脂肪酸的β-氧化所需的过程。过氧化物酶体的生物发生可以通过过氧化物酶体增殖物的存在来诱导,包括脂肪酸,它们激活了基础诱导过程的复杂细胞程序。在这里,我们使用排列的酵母细胞突变体阵列的多参数定量表型分析,来建立过氧化物酶体诱导和功能所需基因的综合目录。所采用的测定法包括在脂肪酸存在下的生长,以及通过诱导过程进行的共聚焦成像和流式细胞术。除了与过氧化物体功能丧失相关的经典表型外,这些研究还鉴定了 169 个基因,这些基因对于强大的信号转导、转录、正常的过氧化物体发育和形态以及过氧化物体向子细胞的传递是必需的。这些基因产物遍布整个细胞,其中许多与过氧化物体的功能具有间接联系。通过与现有数据集的整合,我们总共展示了 211 个与过氧化物酶体生物发生相关的基因,并强调了在过氧化物酶体生物发生和功能过程中信息流动的复杂网络。