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Mcl1 haploinsufficiency protects mice from Myc-induced acute myeloid leukemia
Zhifu Xiang, Hui Luo, Jacqueline E. Payton, Jennifer Cain, Timothy J. Ley, Joseph T. Opferman, Michael H. Tomasson
Zhifu Xiang, Hui Luo, Jacqueline E. Payton, Jennifer Cain, Timothy J. Ley, Joseph T. Opferman, Michael H. Tomasson
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Research Article Hematology

Mcl1 haploinsufficiency protects mice from Myc-induced acute myeloid leukemia

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Abstract

Antiapoptotic BCL2 family members have been implicated in the pathogenesis of acute myelogenous leukemia (AML), but the functional significance and relative importance of individual proteins (e.g., BCL2, BCL-XL, and myeloid cell leukemia 1 [MCL1]) remain poorly understood. Here, we examined the expression of BCL2, BCL-XL, and MCL1 in primary human hematopoietic subsets and leukemic blasts from AML patients and found that MCL1 transcripts were consistently expressed at high levels in all samples tested. Consistent with this, Mcl1 protein was also highly expressed in myeloid leukemic blasts in a mouse Myc-induced model of AML. We used this model to test the hypothesis that Mcl1 facilitates AML development by allowing myeloid progenitor cells to evade Myc-induced cell death. Indeed, activation of Myc for 7 days in vivo substantially increased myeloid lineage cell numbers, whereas hematopoietic stem, progenitor, and B-lineage cells were depleted. Furthermore, Mcl1 haploinsufficiency abrogated AML development. In addition, deletion of a single allele of Mcl1 from fully transformed AML cells substantially prolonged the survival of transplanted mice. Conversely, the rapid lethality of disease was restored by coexpression of Bcl2 and Myc in Mcl1-haploinsufficient cells. Together, these data demonstrate a critical and dose-dependent role for Mcl1 in AML pathogenesis in mice and suggest that MCL1 may be a promising therapeutic target in patients with de novo AML.

Authors

Zhifu Xiang, Hui Luo, Jacqueline E. Payton, Jennifer Cain, Timothy J. Ley, Joseph T. Opferman, Michael H. Tomasson

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Figure 6

Pharmacologic suppression of Mcl1 expression inhibits growth of murine and human AML cells.

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Pharmacologic suppression of Mcl1 expression inhibits growth of murine a...
(A) Western blot of Mcl1 protein levels in lysates prepared from MSCV-Myc AML cells treated in liquid culture for the indicated times with flavopiridol. NT, nontreated cells at 6 hours. Mouse embryonic fibroblasts were used as protein control. Ratio of Mcl1 to actin protein levels, quantified by densitometry, are shown below. (B) Dose-dependent flavopiridol suppression of MSCV-Myc cytokine-independent methylcellulose colony growth. At flavopiridol doses less than 1 μM, growth of normal cytokine-dependent bone marrow progenitors was not affected (not shown). (C) Survival of mice secondarily transplanted with MSCV-Myc AML cells was significantly prolonged by flavopiridol treatment. (D) MTT assay measurement of primary human AML cell growth in the presence of flavopiridol. Results from 4 separate patient samples, plated in triplicate, are shown. Data in B and D are mean ± SD.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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