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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >The human NPM1 mutation A perturbs megakaryopoiesis in a conditional mouse model.
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The human NPM1 mutation A perturbs megakaryopoiesis in a conditional mouse model.

机译:人类NPM1突变A在条件小鼠模型中扰乱了巨核生物。

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The NPM1 mutation is the most frequent genetic alteration thus far identified in acute myeloid leukemia (AML). Despite progress in the clinical and biological characterization of NPM1-mutated AML, the role of NPM1 mutation in leukemogenesis in vivo has not been fully elucidated. We report a novel mouse model that conditionally expresses the most common human NPM1 mutation (type A) in the hematopoietic compartment. In Npm1-TCTG/WT;Cre(+) mice, the NPM1 mutant localized in the cytoplasm (NPMc(+)) of bone marrow (BM) cells. The mutant mice developed no AML after 1.5-year follow-up. However, NPMc(+) expression determined a significant platelet count reduction and an expansion of the megakaryocytic compartment in the BM and spleen. Serum thrombopoietin levels overlapped in mutant vs control mice, and BM cells from Npm1-TCTG/WT;Cre(+) mice formed more megakaryocytic colonies in vitro. Moreover, we demonstrated the up-regulation of microRNAs (miRNAs; miR-10a, miR-10b, and miR-20a) inhibiting megakaryocytic differentiation along with increased expression of HOXB genes. Notably, these findings mimic those of human NPM1-mutated AML, which also exhibits a similar miRNA profile and expansion of the megakaryocytic compartment. Our mouse model provides evidence that the NPM1 mutant affects megakaryocytic development, further expanding our knowledge of the role of NPM1 mutant in leukemogenesis.
机译:NPM1突变是迄今为止在急性髓细胞性白血病(AML)中最常见的遗传变异。尽管在NPM1突变的AML的临床和生物学表征方面取得了进展,但尚未完全阐明NPM1突变在体内白血病发生中的作用。我们报告了一种新型的小鼠模型,有条件地表达造血区室中最常见的人类NPM1突变(A型)。在Npm1-TCTG / WT; Cre(+)小鼠中,NPM1突变体位于骨髓(BM)细胞的细胞质(NPMc(+))中。 1.5年的随访后,突变小鼠未出现AML。但是,NPMc(+)的表达决定了血小板和脾脏中血小板计数的显着减少和巨核细胞区室的扩展。突变与对照小鼠的血清血小板生成素水平重叠,来自Npm1-TCTG / WT; Cre(+)小鼠的BM细胞在体外形成更多的巨核细胞集落。此外,我们证明了上调的microRNA(miRNA; miR-10a,miR-10b和miR-20a)抑制巨核细胞分化以及HOXB基因表达的增加。值得注意的是,这些发现与人类NPM1突变的AML相似,后者也表现出相似的miRNA谱和巨核细胞区室的扩展。我们的小鼠模型提供了NPM1突变体影响巨核细胞发育的证据,进一步扩大了我们对NPM1突变体在白血病发生中作用的认识。

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