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The miR-141/200c-STAT4 Axis Contributes to Leukemogenesis by Enhancing Cell Proliferation in T-PLL

Authors :
Moritz Otte
Johanna Stachelscheid
Markus Glaß
Linus Wahnschaffe
Qu Jiang
Waseem Lone
Aleksandr Ianevski
Tero Aittokallio
Javeed Iqbal
Michael Hallek
Stefan Hüttelmaier
Alexandra Schrader
Till Braun
Marco Herling
Source :
Cancers; Volume 15; Issue 9; Pages: 2527
Publication Year :
2023
Publisher :
MDPI AG, 2023.

Abstract

T-prolymphocytic leukemia (T-PLL) is a rare and mature T-cell malignancy with characteristic chemotherapy-refractory behavior and a poor prognosis. Molecular concepts of disease development have been restricted to protein-coding genes. Recent global microRNA (miR) expression profiles revealed miR-141-3p and miR-200c-3p (miR-141/200c) as two of the highest differentially expressed miRs in T-PLL cells versus healthy donor-derived T cells. Furthermore, miR-141/200c expression separates T-PLL cases into two subgroups with high and low expression, respectively. Evaluating the potential pro-oncogenic function of miR-141/200c deregulation, we discovered accelerated proliferation and reduced stress-induced cell death induction upon stable miR-141/200c overexpression in mature T-cell leukemia/lymphoma lines. We further characterized a miR-141/200c-specific transcriptome involving the altered expression of genes associated with enhanced cell cycle transition, impaired DNA damage responses, and augmented survival signaling pathways. Among those genes, we identified STAT4 as a potential miR-141/200c target. Low STAT4 expression (in the absence of miR-141/200c upregulation) was associated with an immature phenotype of primary T-PLL cells as well as with a shortened overall survival of T-PLL patients. Overall, we demonstrate an aberrant miR-141/200c-STAT4 axis, showing for the first time the potential pathogenetic implications of a miR cluster, as well as of STAT4, in the leukemogenesis of this orphan disease.

Details

ISSN :
20726694
Volume :
15
Database :
OpenAIRE
Journal :
Cancers
Accession number :
edsair.doi.dedup.....9b1de8c8968da85e40b4ac133dae6fc2