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全基因组适应性和表达谱分析表明Mga2参与对过氧化氢的适应性反应。

Genome-wide fitness and expression profiling implicate Mga2 in adaptation to hydrogen peroxide.

作者信息

Kelley Ryan, Ideker Trey

机构信息

Program in Bioinformatics, University of California San Diego, La Jolla, California, USA.

出版信息

PLoS Genet. 2009 May;5(5):e1000488. doi: 10.1371/journal.pgen.1000488. Epub 2009 May 29.

Abstract

Caloric restriction extends lifespan, an effect once thought to involve attenuation of reactive oxygen species (ROS) generated by aerobic metabolism. However, recent evidence suggests that caloric restriction may in fact raise ROS levels, which in turn provides protection from acute doses of oxidant through a process called adaptation. To shed light on the molecular mechanisms of adaptation, we designed a series of genome-wide deletion fitness and mRNA expression screens to identify genes involved in adaptation to hydrogen peroxide. Combined with known transcriptional interactions, the integrated data implicate Yap1 and Skn7 as central transcription factors of both the adaptive and acute oxidative responses. They also identify the transcription factors Mga2 and Rox1 as active exclusively in the adaptive response and show that Mga2 is essential for adaptation. These findings are striking because Mga2 and Rox1 have been thought to control the response to hypoxic, not oxidative, conditions. Expression profiling of mga2Delta and rox1Delta knockouts shows that these factors most strongly regulate targets in ergosterol, fatty-acid, and zinc metabolic pathways. Direct quantitation of ergosterol reveals that its basal concentration indeed depends on Mga2, but that Mga2 is not required for the decrease in ergosterol observed during adaptation.

摘要

热量限制可延长寿命,这一效应曾被认为与有氧代谢产生的活性氧(ROS)的减少有关。然而,最近的证据表明,热量限制实际上可能会提高ROS水平,进而通过一种称为适应性的过程为免受急性剂量的氧化剂提供保护。为了阐明适应性的分子机制,我们设计了一系列全基因组缺失适应性和mRNA表达筛选,以鉴定参与过氧化氢适应性的基因。结合已知的转录相互作用,整合的数据表明Yap1和Skn7是适应性和急性氧化应激反应的核心转录因子。它们还鉴定出转录因子Mga2和Rox1仅在适应性反应中起作用,并表明Mga2对适应性至关重要。这些发现令人惊讶,因为Mga2和Rox1一直被认为是控制对缺氧而非氧化条件的反应。mga2Delta和rox1Delta基因敲除的表达谱分析表明,这些因子最强烈地调节麦角固醇、脂肪酸和锌代谢途径中的靶点。麦角固醇的直接定量分析表明,其基础浓度确实依赖于Mga2,但在适应性过程中观察到的麦角固醇减少并不需要Mga2。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd90/2676504/f208b7abdbe9/pgen.1000488.g001.jpg

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