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双特异性磷酸酶3的敲低驱动髓系白血病细胞分化和极化成为巨噬细胞,同时降低其增殖能力和DNA修复适应性。

Knockdown of dual-specificity phosphatase 3 drives differentiation and polarization of myeloid leukemia cells into macrophages with reduced proliferative and DNA repair fitness.

作者信息

Farias Jessica O, Pacheco Diana R D C G, Magalhaes Yuli T, Russo Lilian C, Boell Viktor K, Hilares Donna J F, Forti Fabio L

机构信息

Laboratory of Signaling in Biomolecular Systems, Department of Biochemistry, Institute of Chemistry, University of São Paulo, Sao Paulo, SP, Brazil.

Laboratory of Signaling in Biomolecular Systems, Department of Biochemistry, Institute of Chemistry, University of São Paulo, Sao Paulo, SP, Brazil.

出版信息

Tissue Cell. 2025 Oct;96:102947. doi: 10.1016/j.tice.2025.102947. Epub 2025 May 3.

Abstract

Dual-specificity phosphatase 3 (DUSP3) regulates key cellular processes, including the cell cycle, proliferation, and differentiation. Recently, we demonstrated its crucial role in maintaining genomic stability by interacting with and dephosphorylating nucleophosmin (NPM), thereby modulating nuclear p53 activity under genotoxic stress. Given the frequent mutations in both p53 and NPM in acute myeloid leukemia (AML), this study aimed to investigate the impact of DUSP3 knockdown in two p53-deficient AML cell lines and explore potential correlations with NPM expression. THP-1 cells exhibited higher basal levels of DUSP3 and NPM compared to HL-60 cells, while DUSP3 knockdown reduced NPM expression in HL-60 cells. Upon phorbol 12-myristate 13-acetate (PMA)-induced differentiation into macrophage-like cells, only HL-60 cells displayed decreased levels of both DUSP3 and NPM. DUSP3 knockdown enhanced differentiation in THP-1 and HL-60 cells and promoted non-classical M2 macrophage polarization following additional PMA exposure, as indicated by increased expression of CD11b and CD206. Bioinformatics analysis revealed significant correlations between DUSP3 and NPM gene expression, AML patient survival, and the maturation stage of myeloid cells. Furthermore, DUSP3 knockdown in undifferentiated HL-60 cells impaired proliferation and compromised genomic stability under genotoxic stress induced by doxorubicin. These findings suggest that DUSP3 plays a regulatory role in the differentiation, polarization, and proliferation of myeloid cells. Through the modulation of NPM expression and activity, DUSP3 may contribute to a deeper understanding of leukemia pathophysiology and mechanisms of chemotherapy resistance.

摘要

双特异性磷酸酶3(DUSP3)调节关键的细胞过程,包括细胞周期、增殖和分化。最近,我们证明了它通过与核磷蛋白(NPM)相互作用并使其去磷酸化,在维持基因组稳定性中发挥关键作用,从而在基因毒性应激下调节核p53活性。鉴于急性髓系白血病(AML)中p53和NPM均频繁发生突变,本研究旨在探讨DUSP3敲低对两种p53缺陷型AML细胞系的影响,并探索与NPM表达的潜在相关性。与HL-60细胞相比,THP-1细胞表现出更高的DUSP3和NPM基础水平,而DUSP3敲低降低了HL-60细胞中的NPM表达。在用佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)诱导分化为巨噬细胞样细胞后,只有HL-60细胞的DUSP3和NPM水平均降低。如CD11b和CD206表达增加所示,DUSP3敲低增强了THP-1和HL-60细胞的分化,并在额外暴露于PMA后促进了非经典M2巨噬细胞极化。生物信息学分析揭示了DUSP3与NPM基因表达、AML患者生存率以及髓系细胞成熟阶段之间的显著相关性。此外,未分化的HL-60细胞中DUSP3敲低会损害增殖,并在阿霉素诱导的基因毒性应激下损害基因组稳定性。这些发现表明,DUSP3在髓系细胞的分化、极化和增殖中发挥调节作用。通过调节NPM的表达和活性,DUSP3可能有助于更深入地了解白血病的病理生理学和化疗耐药机制。

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