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戊糖磷酸途径是一种代谢氧化还原传感器,可在抗氧化反应期间调节转录。

The pentose phosphate pathway is a metabolic redox sensor and regulates transcription during the antioxidant response.

机构信息

Max Planck Institute for Molecular Genetics, Berlin, Germany.

出版信息

Antioxid Redox Signal. 2011 Jul 15;15(2):311-24. doi: 10.1089/ars.2010.3797. Epub 2011 May 19.

Abstract

AIMS

A shift in primary carbon metabolism is the fastest response to oxidative stress. Induced within seconds, it precedes transcriptional regulation, and produces reducing equivalents in form of NADPH within the pentose phosphate pathway (PPP).

RESULTS

Here, we provide evidence for a regulatory signaling function of this metabolic transition in yeast. Several PPP-deficiencies caused abnormal accumulation of intermediate metabolites during the stress response. These PPP-deficient strains had strong growth deficits on media containing oxidants, but we observed that part of their oxidant-phenotypes were not attributable to the production of NADPH equivalents. This pointed to a second, yet unknown role of the PPP in the antioxidant response. Comparing transcriptome profiles obtained by RNA sequencing, we found gene expression profiles that resembled oxidative conditions when PPP activity was increased. Vice versa, deletion of PPP enzymes disturbed and delayed mRNA and protein expression during the antioxidant response.

INNOVATION

Thus, the transient activation of the PPP is a metabolic signal required for balancing and timing gene expression upon an oxidative burst.

CONCLUSION

Consequently, dynamic rearrangements in central carbon metabolism seem to be of major importance for eukaryotic redox sensing, and represent a novel class of dynamic gene expression regulators.

摘要

目的

初级碳代谢的转变是对氧化应激的最快反应。它在转录调控之前发生,在戊糖磷酸途径 (PPP) 中以 NADPH 的形式产生还原当量。

结果

在这里,我们为酵母中这种代谢转变的调节信号功能提供了证据。几种 PPP 缺陷在应激反应过程中导致中间代谢物异常积累。这些 PPP 缺陷菌株在含有氧化剂的培养基上生长缺陷严重,但我们观察到它们的部分氧化剂表型不能归因于 NADPH 当量的产生。这指向了 PPP 在抗氧化反应中的第二个、未知的作用。通过 RNA 测序获得的转录组图谱比较表明,当 PPP 活性增加时,基因表达图谱类似于氧化条件。相反,PPP 酶的缺失会干扰和延迟抗氧化反应过程中的 mRNA 和蛋白质表达。

创新

因此,PPP 的短暂激活是在氧化爆发时平衡和定时基因表达所需的代谢信号。

结论

因此,中央碳代谢的动态重排对于真核生物的氧化还原感应似乎非常重要,并代表了一类新的动态基因表达调节剂。

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