染色体易位
髓系白血病
癌症研究
内吞作用
生物
突变
融合基因
疾病
白血病
急性白血病
细胞
融合蛋白
化疗
基因
临床意义
DNA甲基化
甲基化
靶向治疗
后天抵抗
细胞生物学
细胞培养
细胞生长
运行x1t1
医学
发病机制
癌症
作者
John M. Cullen,Antonia C. Nakatsugawa,Natalie Barton,Henry Haines,Gary S. Stein,Janet L. Stein,Daniel S. Wechsler,Jessica L. Heath
标识
DOI:10.1002/1873-3468.70279
摘要
The t(10;11)(p13;q14‐21) PICALM::MLLT10 chromosomal translocation results in the production of the CALM‐AF10 fusion oncoprotein and is a driver mutation in both acute myeloid and T‐lymphoblastic leukemia. PICALM::MLLT10 translocated leukemia is primarily an epigenetically driven disease. Global hypomethylation results in genomic instability, while focal H3K79 hypermethylation at target genes induces cell proliferation and blocks differentiation. Nucleocytoplasmic shuttling of CALM‐AF10 and its protein partners and impaired endocytosis at the plasma membrane further influence the leukemic phenotype. Leukemias characterized by PICALM::MLLT10 have historically been recognized to portend a poor prognosis; however, insights from larger patient cohorts provide refinement to the prognostic relevance of this chromosomal translocation, highlighting chemotherapy resistance in this leukemic subtype. In addition, a deeper biological understanding of the disease hints at potential therapeutic targets. This approach is demonstrated in the recent promising results achieved utilizing venetoclax, a BCL2 inhibitor, in patients with PICALM::MLLT10 acute leukemia. Herein, we provide updates on the pathophysiology, clinical presentation, prognosis, and treatment of PICALM::MLLT10 acute leukemia.
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