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NFIA-ETO2 融合阻断红系成熟,并与突变 TP53 协同诱导纯红细胞白血病。

The NFIA-ETO2 fusion blocks erythroid maturation and induces pure erythroid leukemia in cooperation with mutant TP53.

机构信息

University Children's Hospital Basel, University of Basel, Basel, Switzerland.

Department of Biomedicine, University of Basel, Basel, Switzerland.

出版信息

Blood. 2023 May 4;141(18):2245-2260. doi: 10.1182/blood.2022017273.

Abstract

The NFIA-ETO2 fusion is the product of a t(1;16)(p31;q24) chromosomal translocation, so far, exclusively found in pediatric patients with pure erythroid leukemia (PEL). To address the role for the pathogenesis of the disease, we facilitated the expression of the NFIA-ETO2 fusion in murine erythroblasts (EBs). We observed that NFIA-ETO2 significantly increased proliferation and impaired erythroid differentiation of murine erythroleukemia cells and of primary fetal liver-derived EBs. However, NFIA-ETO2-expressing EBs acquired neither aberrant in vitro clonogenic activity nor disease-inducing potential upon transplantation into irradiated syngenic mice. In contrast, in the presence of 1 of the most prevalent erythroleukemia-associated mutations, TP53R248Q, expression of NFIA-ETO2 resulted in aberrant clonogenic activity and induced a fully penetrant transplantable PEL-like disease in mice. Molecular studies support that NFIA-ETO2 interferes with erythroid differentiation by preferentially binding and repressing erythroid genes that contain NFI binding sites and/or are decorated by ETO2, resulting in a activity shift from GATA- to ETS-motif-containing target genes. In contrast, TP53R248Q does not affect erythroid differentiation but provides self-renewal and survival potential, mostly via downregulation of known TP53 targets. Collectively, our work indicates that NFIA-ETO2 initiates PEL by suppressing gene expression programs of terminal erythroid differentiation and cooperates with TP53 mutation to induce erythroleukemia.

摘要

NFIA-ETO2 融合是 t(1;16)(p31;q24) 染色体易位的产物,迄今为止,仅在儿童纯红白血病 (PEL) 患者中发现。为了阐明疾病发病机制中的作用,我们促进了 NFIA-ETO2 融合在小鼠红系祖细胞 (EB) 中的表达。我们观察到 NFIA-ETO2 显著增加了小鼠红白血病细胞和原代胎肝来源的 EB 的增殖,并损害了其红系分化。然而,表达 NFIA-ETO2 的 EB 既没有获得异常的体外集落生成活性,也没有在移植到照射同基因小鼠后引起疾病诱导潜能。相比之下,在存在最常见的白血病相关突变之一 TP53R248Q 的情况下,NFIA-ETO2 的表达导致异常的集落生成活性,并在小鼠中诱导完全穿透性的可移植 PEL 样疾病。分子研究表明,NFIA-ETO2 通过优先结合和抑制含有 NFI 结合位点的红细胞基因和/或被 ETO2 修饰的红细胞基因,干扰红细胞分化,导致从 GATA 到 ETS 基序包含的靶基因的活性转移。相比之下,TP53R248Q 不影响红细胞分化,但提供自我更新和生存潜力,主要是通过下调已知的 TP53 靶基因。总之,我们的工作表明 NFIA-ETO2 通过抑制终端红细胞分化的基因表达程序引发 PEL,并与 TP53 突变协同诱导红白血病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/879f/10646783/06fa6805461e/BLOOD_BLD-2022-017273-fx1.jpg

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