IDH2 clonal hematopoiesis and IKAROS loss cooperate in a B-ALL subtype after lenalidomide therapy for multiple myeloma

生物 来那度胺 IDH2型 多发性骨髓瘤 癌症研究 表观遗传学 造血 髓样 DNA甲基化 背景(考古学) 髓系白血病 癌症的体细胞进化 突变 白血病 全景望远镜 免疫学 骨髓增生异常综合症 体细胞 遗传学 种系突变 表型 癸他滨 淋巴细胞生成 生殖系 基因
作者
Johanna Horns,Thomas Beder,Axel Künstner,Malwine Barz,Sonja Bendig,Cecilia Bozzetti,Guranda Chitadze,Nikos Darzentas,Katharina Iben,Michaela Kotrová,José-Ignacio Martín-Subero,Mayukh Mondal,M. Neumann,Raúl F. Pérez,Aeint-Steffen Ströh,Wiebke Weßels,Lennart Lenk,Lars Velten,Boris Böll,Krischan Braitsch
出处
期刊:Blood [Elsevier BV]
卷期号:148 (7): 856-866 被引量:3
标识
DOI:10.1182/blood.2025031047
摘要

ABSTRACT: Lenalidomide, a maintenance treatment in multiple myeloma first-line therapy, increases the risk of secondary malignancies, including B-cell precursor acute lymphoblastic leukemia (B-ALL). We present a comprehensive molecular characterization of 57 patients with lenalidomide-associated B-ALL (LenB-ALL), revealing 3 mutational subgroups: (1) TP53mt (30%); (2) IDH2mt (p.R140Q) (23%); and (3) other, including NRAS/KRASmt. Remarkably, IDH2 R140Q mutations were highly enriched in LenB-ALL compared with those in primary B-ALL (P< .001). Furthermore, IKZF1 intragenic deletions, often subclonal and likely RAG recombinase-mediated, were observed in 54% (7/13) of IDH2mt patients with LenB-ALL. IDH2 mutations were not restricted to the leukemic clone: they persisted during measurable residual disease-negative remission and were identified in lymphoid as well as myeloid cell populations using fluorescence-activated cell sorting and single-cell RNA sequencing. This indicates a preleukemic origin of the IDH2 mutation within the context of clonal hematopoiesis. Transcriptomic and DNA methylation analyses revealed a distinct gene expression profile and a DNA hypermethylation phenotype in IDH2mt LenB-ALL, including IDH2mt-specific as well as lenalidomide-associated features. We propose that lenalidomide promotes the expansion of IDH2-mutated clonal hematopoiesis and, via IKAROS downregulation, induces a maturation arrest at the B-cell precursor stage. Subsequent genetic or epigenetic alterations render leukemogenesis independent of ongoing lenalidomide exposure. All these data define IDH2mt B-ALL as a distinct molecular subtype that is markedly overrepresented after lenalidomide treatment and highlight clonal hematopoiesis as a key contributing factor in the development of LenB-ALL.
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