Preston Alexandra E, Frost Joe N, Teh Megan R, Badat Mohsin, Armitage Andrew E, Norfo Ruggiero, Wideman Sarah K, Hanifi Muhammad, White Natasha, Roy Noémi Ba, Babbs Christian, Ghesquiere Bart, Davies James, Howden Andrew Jm, Sinclair Linda V, Hughes Jim R, Kassouf Mira, Beagrie Rob, Higgs Douglas R, Drakesmith Hal
MRC Translational Immune Discovery Unit, MRC Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, University of Oxford, Oxford, UK.
Immunology Program, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Nat Commun. 2025 Mar 24;16(1):2749. doi: 10.1038/s41467-025-57683-z.
Red blood cell development from erythroid progenitors requires profound reshaping of metabolism and gene expression. How these transcriptional and metabolic alterations are coupled is unclear. Nprl3 (an inhibitor of mTORC1) has remained in synteny with the α-globin genes for >500 million years, and harbours most of the a-globin enhancers. However, whether Nprl3 serves an erythroid role is unknown. We found that while haematopoietic progenitors require basal Nprl3 expression, erythroid Nprl3 expression is further boosted by the α-globin enhancers. This lineage-specific upregulation is required for sufficient erythropoiesis. Loss of Nprl3 affects erythroblast metabolism via elevating mTORC1 signalling, suppressing autophagy and disrupting glycolysis. Broadly consistent with these murine findings, human NPRL3-knockout erythroid progenitors produce fewer enucleated cells and demonstrate dysregulated mTORC1 signalling in response to nutrient availability and erythropoietin. Therefore, we propose that the anciently conserved linkage of NprI3, α-globin and their associated enhancers has coupled metabolic and developmental control of erythropoiesis.
红细胞从红系祖细胞发育需要代谢和基因表达的深刻重塑。目前尚不清楚这些转录和代谢改变是如何相互关联的。Nprl3(mTORC1的一种抑制剂)与α-珠蛋白基因保持共线性超过5亿年,并包含大部分α-珠蛋白增强子。然而,Nprl3是否在红细胞生成中发挥作用尚不清楚。我们发现,虽然造血祖细胞需要基础的Nprl3表达,但α-珠蛋白增强子会进一步提高红系细胞中Nprl3的表达。这种谱系特异性上调是充分的红细胞生成所必需的。Nprl3的缺失通过提高mTORC1信号传导、抑制自噬和破坏糖酵解来影响成红细胞代谢。与这些小鼠研究结果大致一致的是,人类NPRL3基因敲除的红系祖细胞产生的去核细胞较少,并且在对营养物质可用性和促红细胞生成素的反应中表现出mTORC1信号传导失调。因此,我们提出,NprI3、α-珠蛋白及其相关增强子古老保守的联系将红细胞生成的代谢控制和发育控制联系了起来。