Elucidation of the Role of FAM210B in Mitochondrial Metabolism and Erythropoiesis.

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2022-12-15 DOI:10.1128/mcb.00143-22
Chie Suzuki, Tohru Fujiwara, Hiroki Shima, Koya Ono, Kei Saito, Hiroki Kato, Koichi Onodera, Satoshi Ichikawa, Noriko Fukuhara, Yasushi Onishi, Hisayuki Yokoyama, Yukio Nakamura, Kazuhiko Igarashi, Hideo Harigae
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引用次数: 3

Abstract

Mitochondria play essential and specific roles during erythroid differentiation. Recently, FAM210B, encoding a mitochondrial inner membrane protein, has been identified as a novel target of GATA-1, as well as an erythropoietin-inducible gene. While FAM210B protein is involved in regulate mitochondrial metabolism and heme biosynthesis, its detailed function remains unknown. Here, we generated both knockout and knockdown of endogenous FAM210B in human induced pluripotent stem-derived erythroid progenitor (HiDEP) cells using CRISPR/Cas9 methodology. Intriguingly, erythroid differentiation was more pronounced in the FAM210B-depleted cells, and this resulted in increased frequency of orthochromatic erythroblasts and decreased frequencies of basophilic/polychromatic erythroblasts. Comprehensive metabolite analysis and functional analysis indicated that oxygen consumption rates and the NAD (NAD+)/NADH ratio were significantly decreased, while lactate production was significantly increased in FAM210B deletion HiDEP cells, indicating involvement of FAM210B in mitochondrial energy metabolism in erythroblasts. Finally, we purified FAM210B-interacting protein from K562 cells that stably expressed His/biotin-tagged FAM210B. Mass spectrometry analysis of the His/biotin-purified material indicated interactions with multiple subunits of mitochondrial ATP synthases, such as subunit alpha (ATP5A) and beta (ATP5B). Our results suggested that FAM210B contributes prominently to erythroid differentiation by regulating mitochondrial energy metabolism. Our results provide insights into the pathophysiology of dysregulated hematopoiesis.

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FAM210B在线粒体代谢和红细胞生成中的作用。
线粒体在红细胞分化过程中起着重要而特殊的作用。最近,编码线粒体内膜蛋白的FAM210B被发现是GATA-1的新靶点,也是促红细胞生成素诱导基因。FAM210B蛋白参与调节线粒体代谢和血红素生物合成,但其具体功能尚不清楚。在这里,我们使用CRISPR/Cas9方法在人诱导的多能干细胞衍生的红系祖细胞(HiDEP)中产生了内源性FAM210B的敲除和敲除。有趣的是,在fam210b缺失的细胞中,红系分化更为明显,这导致正色红母细胞频率增加,嗜碱性/多色红母细胞频率降低。综合代谢物分析和功能分析表明,FAM210B缺失的HiDEP细胞的耗氧率和NAD (NAD+)/NADH比值显著降低,乳酸产量显著增加,表明FAM210B参与了红母细胞线粒体能量代谢。最后,我们从稳定表达His/生物素标记的FAM210B的K562细胞中纯化了FAM210B相互作用蛋白。质谱分析表明,His/生物素纯化的材料与线粒体ATP合成酶的多个亚基相互作用,如α亚基(ATP5A)和β亚基(ATP5B)。我们的研究结果表明FAM210B通过调节线粒体能量代谢对红系分化有重要作用。我们的结果为造血失调的病理生理学提供了见解。
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CiteScore
7.20
自引率
4.30%
发文量
567
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