Suppr超能文献

NCOA4 将铁的生物利用度与 DNA 代谢联系起来。

NCOA4 links iron bioavailability to DNA metabolism.

机构信息

Department of Molecular Medicine and Medical Biotechnology (DMMBM), University of Naples Federico II, via Sergio Pansini 5, Naples 80131, Italy.

Istituto di Fisiologia Clinica (IFC), Consiglio Nazionale delle Ricerche (CNR) and Core Research Laboratory (CRL), Istituto per lo Studio, la Prevenzione e la Rete Oncologica (ISPRO), Siena 53100, Italy.

出版信息

Cell Rep. 2022 Aug 16;40(7):111207. doi: 10.1016/j.celrep.2022.111207.

Abstract

Iron is essential for deoxyribonucleotides production and for enzymes containing an Fe-S cluster involved in DNA replication and repair. How iron bioavailability and DNA metabolism are coordinated remains poorly understood. NCOA4 protein mediates autophagic degradation of ferritin to maintain iron homeostasis and inhibits DNA replication origin activation via hindrance of the MCM2-7 DNA helicase. Here, we show that iron deficiency inhibits DNA replication, parallel to nuclear NCOA4 stabilization. In iron-depleted cells, NCOA4 knockdown leads to unscheduled DNA synthesis, with replication stress, genome instability, and cell death. In mice, NCOA4 genetic inactivation causes defective intestinal regeneration upon dextran sulfate sodium-mediated injury, with DNA damage, defective cell proliferation, and cell death; in intestinal organoids, this is fostered by iron depletion. In summary, we describe a NCOA4-dependent mechanism that coordinates iron bioavailability and DNA replication. This function prevents replication stress, maintains genome integrity, and sustains high rates of cell proliferation during tissue regeneration.

摘要

铁对于脱氧核苷酸的生成以及包含 Fe-S 簇的酶至关重要,这些酶参与 DNA 的复制和修复。铁的生物利用度和 DNA 代谢如何协调仍知之甚少。NCOA4 蛋白通过阻碍 MCM2-7 DNA 解旋酶来介导铁蛋白的自噬降解,以维持铁稳态,并抑制 DNA 复制起始的激活。在这里,我们表明缺铁会抑制 DNA 复制,同时导致核 NCOA4 稳定。在缺铁的细胞中,NCOA4 敲低会导致无计划的 DNA 合成,伴有复制应激、基因组不稳定性和细胞死亡。在小鼠中,NCOA4 基因失活会导致葡聚糖硫酸钠介导损伤后的肠道再生缺陷,伴有 DNA 损伤、细胞增殖缺陷和细胞死亡;在肠道类器官中,缺铁会促进这种现象。总之,我们描述了一种 NCOA4 依赖性机制,它协调铁的生物利用度和 DNA 复制。该功能可防止复制应激,维持基因组完整性,并在组织再生过程中维持高细胞增殖率。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验