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精氨酸代谢通过 eIF5A 的脱亚氨基作用调节人红细胞分化。

Arginine metabolism regulates human erythroid differentiation through hypusination of eIF5A.

机构信息

Institut de Génétique Moléculaire de Montpellier, Université de Montpellier, Centre National de la Recherche Scientifique (CNRS), Montpellier, France.

Laboratory of Excellence GR-Ex, Paris, France.

出版信息

Blood. 2023 May 18;141(20):2520-2536. doi: 10.1182/blood.2022017584.

Abstract

Metabolic programs contribute to hematopoietic stem and progenitor cell (HSPC) fate, but it is not known whether the metabolic regulation of protein synthesis controls HSPC differentiation. Here, we show that SLC7A1/cationic amino acid transporter 1-dependent arginine uptake and its catabolism to the polyamine spermidine control human erythroid specification of HSPCs via the activation of the eukaryotic translation initiation factor 5A (eIF5A). eIF5A activity is dependent on its hypusination, a posttranslational modification resulting from the conjugation of the aminobutyl moiety of spermidine to lysine. Notably, attenuation of hypusine synthesis in erythroid progenitors, by the inhibition of deoxyhypusine synthase, abrogates erythropoiesis but not myeloid cell differentiation. Proteomic profiling reveals mitochondrial translation to be a critical target of hypusinated eIF5A, and accordingly, progenitors with decreased hypusine activity exhibit diminished oxidative phosphorylation. This affected pathway is critical for eIF5A-regulated erythropoiesis, as interventions augmenting mitochondrial function partially rescue human erythropoiesis under conditions of attenuated hypusination. Levels of mitochondrial ribosomal proteins (RPs) were especially sensitive to the loss of hypusine, and we find that the ineffective erythropoiesis linked to haploinsufficiency of RPS14 in chromosome 5q deletions in myelodysplastic syndrome is associated with a diminished pool of hypusinated eIF5A. Moreover, patients with RPL11-haploinsufficient Diamond-Blackfan anemia as well as CD34+ progenitors with downregulated RPL11 exhibit a markedly decreased hypusination in erythroid progenitors, concomitant with a loss of mitochondrial metabolism. Thus, eIF5A-dependent protein synthesis regulates human erythropoiesis, and our data reveal a novel role for RPs in controlling eIF5A hypusination in HSPCs, synchronizing mitochondrial metabolism with erythroid differentiation.

摘要

代谢程序有助于造血干细胞和祖细胞 (HSPC) 的命运,但尚不清楚蛋白质合成的代谢调节是否控制 HSPC 的分化。在这里,我们表明 SLC7A1/阳离子氨基酸转运蛋白 1 依赖性精氨酸摄取及其分解代谢为多胺亚精胺通过激活真核翻译起始因子 5A (eIF5A) 控制 HSPC 的人类红细胞特化。eIF5A 的活性依赖于其 hypusination,这是一种由亚精胺的氨基丁基部分与赖氨酸结合的翻译后修饰。值得注意的是,通过抑制脱氧亚精氨酸合酶抑制红细胞前体细胞中的 hypusine 合成会破坏红细胞生成,但不会破坏髓样细胞分化。蛋白质组学分析表明线粒体翻译是 hypusinated eIF5A 的关键靶标,因此,hypusine 活性降低的祖细胞表现出氧化磷酸化减少。受影响的途径对于 hypusine 调节的红细胞生成至关重要,因为干预增强线粒体功能可部分挽救在 hypusination 减弱的情况下的人类红细胞生成。线粒体核糖体蛋白 (RP) 的水平对 hypusine 的丧失特别敏感,我们发现,在骨髓增生异常综合征中染色体 5q 缺失导致的 RPS14 杂合不足相关的无效红细胞生成与 hypusinated eIF5A 的池减少有关。此外,RPL11 杂合不足的 Diamond-Blackfan 贫血患者以及下调 RPL11 的 CD34+祖细胞在红细胞前体细胞中表现出明显的 hypusination 减少,同时伴随着线粒体代谢的丧失。因此,eIF5A 依赖性蛋白质合成调节人类红细胞生成,我们的数据揭示了 RP 在控制 HSPC 中 eIF5A hypusination 中的新作用,使线粒体代谢与红细胞分化同步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4407/10273172/e59b34603913/BLOOD_BLD-2022-017584-fx1.jpg

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