骨髓
贫血
生物
嗜碱性
大细胞贫血
免疫学
谱系(遗传)
红细胞
体细胞
疾病
网织红细胞
造血
突变
病理生理学
医学
白血病
种系突变
促红细胞生成素
癌症研究
红细胞生成
红细胞
干细胞
作者
François Rodrigues,Giulia Hardouin,Sara El Hoss,Aya Ghoul,Emilie‐Fleur Gautier,Michaël Dussiot,Maria A. Lizarralde-Iragorri,Annalisa Santini,S. Peltier,Pascal Amireault,Vanessa Soldan,Annarita Miccio,Mounia Debili,Vincent Jachiet,Thiago Trovati Maciel,Julien Rossignol,Eric Allemand,A. Mékinian,Sophie Georgin‐Lavialle,Mohammad Salma
出处
期刊:Blood
[Elsevier BV]
日期:2025-09-19
卷期号:147 (11): 1178-1190
被引量:2
标识
DOI:10.1182/blood.2025029081
摘要
VEXAS (vacuoles, E1 enzyme, X-linked, autoinflammatory, somatic) syndrome is a recently discovered autoinflammatory disorder linked to somatic mutations in the UBA1 gene, resulting in a profound cytoplasm-restricted defect in ubiquitylation. The disease is characterized by a macrocytic anemia that remains poorly understood. To investigate the erythroid lineage in VEXAS, we conducted a comprehensive study combining in vivo assessments of patients' mature red cells and marrow erythroblasts, alongside in vitro base-editing models of erythropoiesis. Here we show that mature red cells do not exhibit ubiquitylation defects, and patient-derived bone marrow erythroblasts lack UBA1 mutations beyond the basophilic stage of erythroid differentiation. In vitro base editing of UBA1 variants in CD34+ primary cells resulted in high mortality during early erythroid differentiation, but not during monocytic differentiation. Edited erythroid precursors displayed TP53 overexpression linked to defective ubiquitylation and anomalies in ribosome biogenesis, reminiscent of Diamond-Blackfan anemia. We propose that VEXAS-associated anemia should be considered as a mosaic erythroblastopenia, where the severity of anemia is influenced by the quality and quantity of the UBA1-WT compartment. Our findings offer new insights into the physiopathology of VEXAS and may suggest new potential therapeutic options.
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