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Post-Transcriptional Regulation of Iron Homeostasis in Saccharomyces cerevisiae

机译:酿酒酵母中铁稳态的转录后调节

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摘要

Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox cofactor in a wide variety of biological processes. Recent studies in Saccharomyces cerevisiae have shown that in response to iron deficiency, an RNA-binding protein denoted Cth2 coordinates a global metabolic rearrangement that aims to optimize iron utilization. The Cth2 protein contains two Cx8Cx5Cx3H tandem zinc fingers (TZFs) that specifically bind to adenosine/uridine-rich elements within the 3′ untranslated region of many mRNAs to promote their degradation. The Cth2 protein shuttles between the nucleus and the cytoplasm. Once inside the nucleus, Cth2 binds target mRNAs and stimulates alternative 3′ end processing. A Cth2/mRNA-containing complex is required for export to the cytoplasm, where the mRNA is degraded by the 5′ to 3′ degradation pathway. This post-transcriptional regulatory mechanism limits iron utilization in nonessential pathways and activates essential iron-dependent enzymes such as ribonucleotide reductase, which is required for DNA synthesis and repair. Recent findings indicate that the TZF-containing tristetraprolin protein also functions in modulating human iron homeostasis. Elevated iron concentrations can also be detrimental for cells. The Rnt1 RNase III exonuclease protects cells from excess iron by promoting the degradation of a subset of the Fe acquisition system when iron levels rise.
机译:铁是所有真核生物必不可少的微量营养素,因为铁作为氧化还原辅助因子参与了多种生物过程。酿酒酵母的最新研究表明,针对铁缺乏症,一种表示Cth2的RNA结合蛋白可协调旨在优化铁利用的全局代谢重排。 Cth2蛋白包含两个Cx8Cx5Cx3H串联锌指(TZF),它们与许多mRNA的3'非翻译区内的富含腺苷/尿苷的元素特异性结合,从而促进其降解。 Cth2蛋白在细胞核和细胞质之间穿梭。一旦进入细胞核,Cth2就会结合靶标mRNA,并刺激其他3'末端加工。含有Cth2 / mRNA的复合物需要输出到细胞质,在那里mRNA通过5'到3'降解途径降解。这种转录后调节机制限制了铁在非必需途径中的利用,并激活了必需的铁依赖性酶(如核糖核苷酸还原酶),这是DNA合成和修复所必需的。最近的发现表明,含TZF的tristetraprolin蛋白还在调节人体内铁稳态中起作用。铁浓度升高也可能对细胞有害。当铁水平升高时,Rnt1 RNase III核酸外切酶可通过促进Fe采集系统中一部分亚铁的降解来保护细胞免受过量铁的侵害。

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