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PMID: 41951665 已发表 · epublish 英语

RPS19 and RPL5 haploinsufficient models reveal divergent ribosomal subunit controls of fetal hematopoiesis.

Nature communications ·第 17 卷 ·第 1 期 ·2026-04-08

Tang Y, Ling T, Mehmood R, Bertrand A, Papoin J, Khan M, Rao R, Xu J, Schulz V, Palis J, Steiner LA, Barnes BJ, Zou YR, Marambaud P, Signer RAJ, Roberts I, Iskander D, Zon LI, Bhoopalan SV, Weiss MJ, Lipton JM, Gallagher PG, Mohandas N, Taylor N, Durand S, Crispino J, Blanc L

摘要

Diamond Blackfan anemia syndrome (DBAS) is a congenital ribosomopathy caused by haploinsufficiency of ribosomal proteins (RPs), but how RP stoichiometry and activity regulates erythroid development remains enigmatic. Using in vivo models, we uncover divergent functions for the small and large ribosomal subunit proteins RPS19 and RPL5 in fetal hematopoiesis. While RPL5 haploinsufficiency causes hematopoietic stem and progenitor cell (HSPC) accumulation and prenatal lethality via p53-mediated ferroptosis of mature erythroid progenitors, RPS19 haploinsufficiency leads to HSPC depletion and impaired erythroid expansion through p53-dependent apoptosis. The latter is accompanied by translational and transcriptional dysregulation, including the upregulation of RUNX1, which is also observed in RPS- haploinsufficient DBAS patients. Importantly, Runx1 deletion in RPS19-haploinsufficient mice partially rescues HSPC numbers. These findings reveal subunit-specific RP functions in controlling fetal hematopoiesis and demonstrate how imbalanced RP stoichiometry disrupts developmental programs, providing crucial mechanistic insights into DBAS pathogenesis and the basis for its clinical heterogeneity.

文献信息
期刊
Nature communications
期刊简称
Nat Commun
ISSN
2041-1723
发表日期
2026-04-08
语言
英语
国家/地区
England
NLM ID
101528555
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