Enhanced depletion of MLL-fusion proteins in acute leukemia: potential for improved therapeutic outcomes.

IF 9.4 1区 医学 Q1 HEMATOLOGY Experimental Hematology & Oncology Pub Date : 2024-08-16 DOI:10.1186/s40164-024-00556-w
Noelia Che, Sandra Cantilena, Remi Looi-Somoye, Danesh Sundar, Kent Fung, Jasper de Boer, Owen Williams
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Abstract

Rearrangements of the MLL (KMT2A) locus are associated with aggressive leukaemia of both myeloid and lymphoid lineages, that present profound therapeutic challenges in pediatric and adult patient populations. MLL-fusion genes resulting from these rearrangements function as driving oncogenes and have been the focus of research aimed at understanding mechanisms underlying their leukemogenic activity and revealing novel therapeutic opportunities. Inspired by the paradigm of depleting the PML-RARA fusion protein in acute promyelocytic leukemia using all-trans retinoic acid and arsenic trioxide, we conducted a screen to identify FDA-approved drugs capable of depleting MLL-fusion protein expression in leukemia cells. Previously, we reported potent anti-leukemia effects of disulfiram (DSF), identified through this screen. In the present study, we demonstrate that another hit compound, niclosamide (NSM), is also able to deplete MLL-fusion proteins derived from a range of different MLL-fusion genes in both acute myeloid (AML) and acute lymphoid (ALL) leukemias. Loss of MLL-fusion protein appeared to result from inhibition of global protein translation by NSM. Importantly, combination of DSF with NSM enhanced MLL-fusion protein depletion. This led to more profound inhibition of downstream transcriptional leukemogenic programs regulated by MLL-fusion proteins and more effective killing of both MLL-rearranged AML and ALL cells. In contrast, DSF/NSM drug combination had little impact on normal hematopoietic progenitor cell differentiation. This study demonstrates that two FDA-approved drugs with excellent safety profiles can be combined to increase the efficacy of MLL-fusion protein depletion and elimination of MLL-rearranged leukaemia.

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加强急性白血病中 MLL 融合蛋白的清除:改善治疗效果的潜力。
MLL(KMT2A)基因座的重排与骨髓系和淋巴系的侵袭性白血病有关,给儿童和成人患者带来了巨大的治疗挑战。这些重排产生的 MLL 融合基因具有驱动致癌基因的功能,一直是研究的重点,目的是了解其白血病活性的基本机制,并揭示新的治疗机会。受使用全反式维甲酸和三氧化二砷清除急性早幼粒细胞白血病中 PML-RARA 融合蛋白的范例的启发,我们进行了一项筛选,以确定 FDA 批准的能够清除白血病细胞中 MLL 融合蛋白表达的药物。此前,我们曾报道过通过这一筛选确定的双硫仑(DSF)具有强效抗白血病作用。在本研究中,我们证明了另一种命中化合物烟酰胺(NSM)也能在急性髓细胞性白血病(AML)和急性淋巴细胞性白血病(ALL)中消耗来自一系列不同 MLL 融合基因的 MLL 融合蛋白。MLL融合蛋白的缺失似乎是NSM抑制全局蛋白翻译的结果。重要的是,将 DSF 与 NSM 结合使用可增强 MLL 融合蛋白的消耗。这使得由 MLL 融合蛋白调控的下游转录致白血病程序受到更深层次的抑制,并能更有效地杀死 MLL 重组的 AML 和 ALL 细胞。相比之下,DSF/NSM 联合用药对正常造血祖细胞的分化影响很小。这项研究表明,美国食品与药物管理局批准的两种安全性极佳的药物可以联合使用,以提高 MLL 融合蛋白耗竭和消除 MLL 重排白血病的疗效。
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来源期刊
CiteScore
12.60
自引率
7.30%
发文量
97
审稿时长
6 weeks
期刊介绍: Experimental Hematology & Oncology is an open access journal that encompasses all aspects of hematology and oncology with an emphasis on preclinical, basic, patient-oriented and translational research. The journal acts as an international platform for sharing laboratory findings in these areas and makes a deliberate effort to publish clinical trials with 'negative' results and basic science studies with provocative findings. Experimental Hematology & Oncology publishes original work, hypothesis, commentaries and timely reviews. With open access and rapid turnaround time from submission to publication, the journal strives to be a hub for disseminating new knowledge and discussing controversial topics for both basic scientists and busy clinicians in the closely related fields of hematology and oncology.
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