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Published on: January 6, 2023
A gain-of-function mutation in microRNA 142 is sufficient to cause the development of T-cell leukemia in mice
Shingo Kawano1, Kimi Araki1, Jie Bai2
1Institute of Resource Development and Analysis, Kumamoto University, Kumamoto, Japan.
Abstract:
MicroRNAs (miRNAs) play a crucial role in regulating gene expression. MicroRNA expression levels fluctuate, and point mutations and methylation occur in cancer cells; however, to date, there have been no reports of carcinogenic point mutations in miRNAs. MicroRNA 142 (miR-142) is frequently mutated in patients with follicular lymphoma, diffuse large B-cell lymphoma, chronic lymphocytic leukemia (CLL), and acute myeloid leukemia/myelodysplastic syndrome (AML/MDS). To understand the role of miR-142 mutation in blood cancers, the CRISPR-Cas9 system was utilized to successfully generate miR-142-55A>G mutant knock-in (Ki) mice, simulating the most frequent mutation in patients with miR-142 mutated AML/MDS. Bone marrow cells from miR-142 mutant heterozygous Ki mice were transplanted, and we found that the miR-142 mutant/wild-type cells were sufficient for the development of CD8+ T-cell leukemia in mice post-transplantation. RNA-sequencing analysis in hematopoietic stem/progenitor cells and CD8+ T-cells revealed that miR-142-Ki/+ cells had increased expression of the mTORC1 activator, a potential target of wild-type miR-142-3p. Notably, the expression of genes involved in apoptosis, differentiation, and the inhibition of the Akt-mTOR pathway was suppressed in miR-142-55A>G heterozygous cells, indicating that these genes are repressed by the mutant miR-142-3p. Thus, in addition to the loss of function due to the halving of wild-type miR-142-3p alleles, mutated miR-142-3p gained the function to suppress the expression of distinct target genes, sufficient to cause leukemogenesis in mice.
Insights
A specific mutation in microRNA 142 (miR-142) drives blood cancers like acute myeloid leukemia. This mutated miR-142 not only loses function but also gains a new ability to promote leukemogenesis in mice.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- MicroRNAs (miRNAs) are key gene regulators, but their mutations in cancer are understudied.
- MicroRNA 142 (miR-142) mutations are common in hematologic malignancies, including acute myeloid leukemia/myelodysplastic syndrome (AML/MDS).
Purpose of the Study:
- To investigate the role of miR-142 mutations in the development of blood cancers.
- To model the most frequent miR-142 mutation found in AML/MDS patients using CRISPR-Cas9 technology.
Main Methods:
- Generated miR-142-55A>G mutant knock-in (Ki) mice using CRISPR-Cas9.
- Performed bone marrow transplantation studies with heterozygous miR-142 mutant cells.
- Conducted RNA-sequencing on hematopoietic stem/progenitor cells and CD8+ T-cells.
Main Results:
- Transplanted miR-142 mutant cells induced CD8+ T-cell leukemia in mice.
- miR-142-Ki/+ cells showed increased mTORC1 activator expression.
- Genes involved in apoptosis, differentiation, and Akt-mTOR pathway inhibition were suppressed.
Conclusions:
- The miR-142-55A>G mutation causes leukemogenesis through both loss-of-function and gain-of-function mechanisms.
- Mutant miR-142-3p represses distinct target genes, contributing to cancer development.
- This study highlights the oncogenic potential of specific miRNA mutations in hematologic cancers.

