Mir142 loss unlocks IDH2R140-dependent leukemogenesis through antagonistic regulation of HOX genes
AML is a genetically heterogeneous disease and understanding how different co-occurring mutations cooperate to drive leukemogenesis will be crucial for improving diagnostic and therapeutic options for patients. MIR142 mutations have been recurrently detected in IDH-mutated AML samples. Here, we have...
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Veröffentlicht in: | Scientific reports 2020-11, Vol.10 (1), p.19390-19390, Article 19390 |
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Sprache: | eng |
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Zusammenfassung: | AML is a genetically heterogeneous disease and understanding how different co-occurring mutations cooperate to drive leukemogenesis will be crucial for improving diagnostic and therapeutic options for patients.
MIR142
mutations have been recurrently detected in IDH-mutated AML samples. Here, we have used a mouse model to investigate the interaction between these two mutations and demonstrate a striking synergy between
Mir142
loss-of-function and IDH2
R140Q
, with only recipients of double mutant cells succumbing to leukemia. Transcriptomic analysis of the non-leukemic single and leukemic double mutant progenitors, isolated from these mice, suggested a novel mechanism of cooperation whereby
Mir142
loss-of-function counteracts aberrant silencing of
Hoxa
cluster genes by IDH2
R140Q
. Our analysis suggests that IDH2
R140Q
is an incoherent oncogene, with both positive and negative impacts on leukemogenesis, which requires the action of cooperating mutations to alleviate repression of
Hoxa
genes in order to advance to leukemia. This model, therefore, provides a compelling rationale for understanding how different mutations cooperate to drive leukemogenesis and the context-dependent effects of oncogenic mutations. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-020-76218-8 |