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Current status and future perspectives in targeted therapy of NPM1-mutated AML

净现值1 核磷蛋白 生物 癌症研究 基因组不稳定性 靶向治疗 髓系白血病 遗传学 癌症 基因 DNA损伤 核型 染色体 DNA
作者
Roberta Ranieri,Giulia Pianigiani,Sofia Sciabolacci,Vincenzo Maria Perriello,Andrea Marra,Valeria Cardinali,Sara Pierangeli,Francesca Milano,Ilaria Gionfriddo,Lorenzo Brunetti,Maria Paola Martelli,Brunangelo Falini
出处
期刊:Leukemia [Springer Nature]
卷期号:36 (10): 2351-2367 被引量:111
标识
DOI:10.1038/s41375-022-01666-2
摘要

Nucleophosmin 1 (NPM1) is a nucleus-cytoplasmic shuttling protein which is predominantly located in the nucleolus and exerts multiple functions, including regulation of centrosome duplication, ribosome biogenesis and export, histone assembly, maintenance of genomic stability and response to nucleolar stress. NPM1 mutations are the most common genetic alteration in acute myeloid leukemia (AML), detected in about 30-35% of adult AML and more than 50% of AML with normal karyotype. Because of its peculiar molecular and clinico-pathological features, including aberrant cytoplasmic dislocation of the NPM1 mutant and wild-type proteins, lack of involvement in driving clonal hematopoiesis, mutual exclusion with recurrent cytogenetic abnormalities, association with unique gene expression and micro-RNA profiles and high stability at relapse, NPM1-mutated AML is regarded as a distinct genetic entity in the World Health Organization (WHO) classification of hematopoietic malignancies. Starting from the structure and functions of NPM1, we provide an overview of the potential targeted therapies against NPM1-mutated AML and discuss strategies aimed at interfering with the oligomerization (compound NSC348884) and the abnormal traffic of NPM1 (avrainvillamide, XPO1 inhibitors) as well as at inducing selective NPM1-mutant protein degradation (ATRA/ATO, deguelin, (-)-epigallocatechin-3-gallate, imidazoquinoxaline derivatives) and at targeting the integrity of nucleolar structure (actinomycin D). We also discuss the current therapeutic results obtained in NPM1-mutated AML with the BCL-2 inhibitor venetoclax and the preliminary clinical results using menin inhibitors targeting HOX/MEIS1 expression. Finally, we review various immunotherapeutic approaches in NPM1-mutated AML, including immune check-point inhibitors, CAR and TCR T-cell-based therapies against neoantigens created by the NPM1 mutations.
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