PO.MCB08.02 · 分子与细胞生物学
血液系统恶性肿瘤中KMT2A和NPM1变异及融合的真实世界图谱(2020-2025)
Real-world landscape of KMT2A and NPM1 variants and fusions in hematologic malignancies (2020-2025)
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:KMT2A重排和NPM1突变是髓系肿瘤的关键基因组驱动因素,为诊断、预后判断、MRD评估和新兴靶向治疗提供信息。需要大规模真实世界数据来阐明血液系统各适应证中的检测趋势、阳性率和共突变模式。
方法:我们分析了某国家参比实验室队列在2020年10月1日至2025年9月30日期间进行的所有KMT2A和NPM1检测。评估了检测方式、适应证和阳性率,以及阳性病例的变异分类、融合伙伴和汇总的共突变。
结果:在整个研究期间,共进行了201,381次KMT2A和202,902次NPM1检测,阳性率分别为2.6%和3.1%。两种标志物的年度检测量均大幅增加,由医院层面的开单和不断扩展的NGS应用所驱动。检测涵盖两种性别和所有年龄段,大多数样本来自≥65岁的患者。主要检测适应证为MDS、AML和MPN/CMML。KMT2A阳性最常见于AML(1,964例)、MPN(1,369例)和MDS(353例)。NPM1阳性富集于MDS(6,170例)、AML(1,191例)和CMML(541例)。随着时间推移,NGS的使用从2021年起显著扩展,成为NPM1检测的主导方式,并对KMT2A持续进行的FISH检测形成补充,两种平台均检测到阳性。在KMT2A阳性病例中,观察到SNVs(86%)和融合(9%),大多数致病性发现出现在融合阳性样本中。常见的融合伙伴包括MLLT3、AFF1、ELL、MLLT4和MLLT10。复发性共突变涉及TP53、KRAS/NRAS、TET2、FLT3、DNMT3A和ASXL1。在AML中,1,964例KMT2A阳性患者中有273例携带融合。NPM1阳性变异以致病性为主(65%),共存改变涵盖SNVs、插入/缺失和罕见融合。最常见的共突变涉及TET2、DNMT3A、FLT3、IDH2、NRAS和SRSF2。
结论:KMT2A和NPM1的检测在五年内几乎翻了一番,由NGS的广泛采用、FISH的持续应用以及基因组指导疗法(尤其在AML中)对KMT2A和NPM1突变疾病日益增长的临床相关性所驱动。这些发现界定了KMT2A重排和NPM1突变血液系统恶性肿瘤全面的真实世界基因组特征,并支持在诊断、预后判断和治疗开发方面的持续努力。
查看英文原文 English abstract
Background: KMT2A rearrangements and NPM1 mutations are key genomic drivers in myeloid neoplasms, informing diagnosis, prognostication, MRD assessment, and emerging targeted therapies. Large-scale real-world data are needed to clarify testing trends, positivity rates, and co-mutational patterns across hematologic indications.
Methods: We analyzed all KMT2A and NPM1 tests performed in a national reference laboratory cohort from 10/1/2020-9/30/2025. Test modality, indication, and positivity were evaluated, as well as variant classification, fusion partners, and aggregated co-mutations for positive cases.
Results: Across the study period, 201,381 KMT2A and 202,902 NPM1 tests were performed, with positivity rates of 2.6% and 3.1%, respectively. Annual testing volume increased substantially for both markers, driven by hospital-based ordering and expanding NGS utilization. Testing spanned both sexes and all ages, with most samples originating from patients ≥65 years. Top testing indications were MDS, AML, and MPN/CMML. KMT2A positivity was most frequent in AML (1,964), MPN (1,369), and MDS (353). NPM1 positivity was enriched in MDS (6,170), AML (1,191), and CMML (541). Over time, use of NGS expanded significantly from 2021 onward, becoming the dominant modality for NPM1 testing and complementing ongoing FISH testing for KMT2A, with positivity detected across both platforms. Among KMT2A-positive cases, SNVs (86%) and fusions (9%) were observed, with most pathogenic findings occurring in fusion-positive samples. Common fusion partners included MLLT3, AFF1, ELL, MLLT4, and MLLT10. Recurrent co-mutations involved TP53, KRAS/NRAS, TET2, FLT3, DNMT3A, and ASXL1. Within AML, 273 of 1,964 KMT2A-positive patients harbored a fusion. NPM1-positive variants were predominantly pathogenic (65%), with co-alterations spanning SNVs, insertions/deletions, and rare fusions. The most frequent co-mutations involved TET2, DNMT3A, FLT3, IDH2, NRAS, and SRSF2.
Conclusions: Testing for KMT2A and NPM1 nearly doubled over five years, driven by widespread adoption of NGS, continued FISH utilization, and increasing clinical relevance of genomically guided therapies for KMT2A- and NPM1-mutated disease, particularly in AML. These findings define a comprehensive real-world genomic profile of KMT2A-rearranged and NPM1-mutated hematologic malignancies and support ongoing efforts in diagnosis, prognostication, and therapeutic development.
利益披露 Disclosure
R. Puentes,
NeoGenomics Employment, Stock.
M. Paul,
NeoGenomics Employment.
R. Bender,
NeoGenomics Employment.
A. Chevalier,
NeoGenomics Employment.
N. Montgomery,
NeoGenomics Employment.