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缺铁期间通过靶向mRNA降解实现细胞代谢的协同重塑。

Coordinated remodeling of cellular metabolism during iron deficiency through targeted mRNA degradation.

作者信息

Puig Sergi, Askeland Eric, Thiele Dennis J

机构信息

Department of Pharmacology and Cancer Biology, Sarah W. Stedman Nutrition and Metabolism Center, Duke University Medical Center, Research Drive-LSRC-C351, Durham, NC 27710, USA.

出版信息

Cell. 2005 Jan 14;120(1):99-110. doi: 10.1016/j.cell.2004.11.032.

Abstract

Iron (Fe) is an essential micronutrient for virtually all organisms and serves as a cofactor for a wide variety of vital cellular processes. Although Fe deficiency is the primary nutritional disorder in the world, cellular responses to Fe deprivation are poorly understood. We have discovered a posttranscriptional regulatory process controlled by Fe deficiency, which coordinately drives widespread metabolic reprogramming. We demonstrate that, in response to Fe deficiency, the Saccharomyces cerevisiae Cth2 protein specifically downregulates mRNAs encoding proteins that participate in many Fe-dependent processes. mRNA turnover requires the binding of Cth2, an RNA binding protein conserved in plants and mammals, to specific AU-rich elements in the 3' untranslated region of mRNAs targeted for degradation. These studies elucidate coordinated global metabolic reprogramming in response to Fe deficiency and identify a mechanism for achieving this by targeting specific mRNA molecules for degradation, thereby facilitating the utilization of limited cellular Fe levels.

摘要

铁(Fe)是几乎所有生物体必需的微量营养素,并且作为多种重要细胞过程的辅因子。尽管缺铁是全球主要的营养紊乱问题,但细胞对铁剥夺的反应却知之甚少。我们发现了一种由缺铁控制的转录后调控过程,该过程协调驱动广泛的代谢重编程。我们证明,响应缺铁,酿酒酵母Cth2蛋白特异性下调编码参与许多铁依赖性过程的蛋白质的mRNA。mRNA周转需要Cth2(一种在植物和哺乳动物中保守的RNA结合蛋白)与靶向降解的mRNA的3'非翻译区中特定的富含AU的元件结合。这些研究阐明了响应缺铁的协调全局代谢重编程,并确定了通过靶向特定mRNA分子进行降解来实现这一目标的机制,从而促进有限细胞铁水平的利用。

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