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本文引用的文献

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reconstitution, functional dissection, and mutational analysis of metal ion transport by mitoferrin-1.通过 mitoferrin-1 对金属离子转运的重建、功能剖析和突变分析。
J Biol Chem. 2018 Mar 9;293(10):3819-3828. doi: 10.1074/jbc.M117.817478. Epub 2018 Jan 5.
2
Loss of the novel mitochondrial protein FAM210B promotes metastasis via PDK4-dependent metabolic reprogramming.新型线粒体蛋白FAM210B的缺失通过依赖PDK4的代谢重编程促进转移。
Cell Death Dis. 2017 Jun 8;8(6):e2870. doi: 10.1038/cddis.2017.273.
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Erythropoietin signaling regulates heme biosynthesis.促红细胞生成素信号传导调节血红素生物合成。
Elife. 2017 May 29;6:e24767. doi: 10.7554/eLife.24767.
4
Restored iron transport by a small molecule promotes absorption and hemoglobinization in animals.一种小分子恢复铁转运可促进动物体内铁的吸收和血红蛋白化。
Science. 2017 May 12;356(6338):608-616. doi: 10.1126/science.aah3862.
5
Cloche is a bHLH-PAS transcription factor that drives haemato-vascular specification.克洛什(Cloche)是一个 bHLH-PAS 转录因子,它驱动造血血管的特化。
Nature. 2016 Jul 14;535(7611):294-8. doi: 10.1038/nature18614.
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Exome Genotyping Identifies Pleiotropic Variants Associated with Red Blood Cell Traits.外显子基因分型鉴定出与红细胞性状相关的多效性变异。
Am J Hum Genet. 2016 Jul 7;99(1):8-21. doi: 10.1016/j.ajhg.2016.05.007. Epub 2016 Jun 23.
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Systematic Functional Dissection of Common Genetic Variation Affecting Red Blood Cell Traits.影响红细胞性状的常见遗传变异的系统功能剖析
Cell. 2016 Jun 2;165(6):1530-1545. doi: 10.1016/j.cell.2016.04.048.
8
Identification of a novel putative mitochondrial protein FAM210B associated with erythroid differentiation.鉴定一种与红系分化相关的新型假定线粒体蛋白FAM210B。
Int J Hematol. 2016 Apr;103(4):387-95. doi: 10.1007/s12185-016-1968-4. Epub 2016 Mar 11.
9
Disrupted iron homeostasis causes dopaminergic neurodegeneration in mice.铁稳态失衡会导致小鼠多巴胺能神经元变性。
Proc Natl Acad Sci U S A. 2016 Mar 29;113(13):3428-35. doi: 10.1073/pnas.1519473113. Epub 2016 Feb 29.
10
Dynamic Control of Enhancer Repertoires Drives Lineage and Stage-Specific Transcription during Hematopoiesis.造血过程中增强子文库的动态控制驱动谱系和阶段特异性转录
Dev Cell. 2016 Jan 11;36(1):9-23. doi: 10.1016/j.devcel.2015.12.014.

FAM210B 是促红细胞生成素的靶标,通过控制线粒体铁摄取和亚铁螯合酶活性来调节红细胞血红素合成。

FAM210B is an erythropoietin target and regulates erythroid heme synthesis by controlling mitochondrial iron import and ferrochelatase activity.

机构信息

From the Department of Biological Sciences, University of Delaware, Newark, Delaware 19716,

the Division of Hematology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

J Biol Chem. 2018 Dec 21;293(51):19797-19811. doi: 10.1074/jbc.RA118.002742. Epub 2018 Oct 26.

DOI:10.1074/jbc.RA118.002742
PMID:30366982
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6314115/
Abstract

Erythropoietin (EPO) signaling is critical to many processes essential to terminal erythropoiesis. Despite the centrality of iron metabolism to erythropoiesis, the mechanisms by which EPO regulates iron status are not well-understood. To this end, here we profiled gene expression in EPO-treated 32D pro-B cells and developing fetal liver erythroid cells to identify additional iron regulatory genes. We determined that FAM210B, a mitochondrial inner-membrane protein, is essential for hemoglobinization, proliferation, and enucleation during terminal erythroid maturation. deficiency led to defects in mitochondrial iron uptake, heme synthesis, and iron-sulfur cluster formation. These defects were corrected with a lipid-soluble, small-molecule iron transporter, hinokitiol, in -deficient murine erythroid cells and zebrafish morphants. Genetic complementation experiments revealed that FAM210B is not a mitochondrial iron transporter but is required for adequate mitochondrial iron import to sustain heme synthesis and iron-sulfur cluster formation during erythroid differentiation. FAM210B was also required for maximal ferrochelatase activity in differentiating erythroid cells. We propose that FAM210B functions as an adaptor protein that facilitates the formation of an oligomeric mitochondrial iron transport complex, required for the increase in iron acquisition for heme synthesis during terminal erythropoiesis. Collectively, our results reveal a critical mechanism by which EPO signaling regulates terminal erythropoiesis and iron metabolism.

摘要

促红细胞生成素 (EPO) 信号对于许多对终末红细胞生成至关重要的过程至关重要。尽管铁代谢对红细胞生成至关重要,但 EPO 调节铁状态的机制尚不清楚。为此,我们在这里对 EPO 处理的 32D 前 B 细胞和发育中的胎肝红细胞中的基因表达进行了分析,以鉴定其他铁调节基因。我们确定 FAM210B 是一种线粒体内膜蛋白,对于终末红细胞成熟过程中的血红蛋白化、增殖和去核至关重要。 缺陷导致线粒体铁摄取、血红素合成和铁硫簇形成缺陷。这些缺陷可以通过脂溶性小分子铁转运体 hinokitiol 在 -缺陷的鼠红细胞和斑马鱼形态发生体中得到纠正。遗传互补实验表明,FAM210B 不是线粒体铁转运体,但需要足够的线粒体铁内流来维持血红素合成和铁硫簇形成,以支持红细胞分化。FAM210B 还需要在分化的红细胞中实现最大的亚铁螯合酶活性。我们提出 FAM210B 作为一种衔接蛋白发挥作用,促进形成一个寡聚线粒体铁转运复合物,这对于终末红细胞生成过程中增加血红素合成所需的铁摄取是必需的。总之,我们的研究结果揭示了 EPO 信号调节终末红细胞生成和铁代谢的一个关键机制。