Small RNA-Seq Reveals Similar miRNA Transcriptome in Children and Young Adults with T-ALL and Indicates miR-143-3p as Novel Candidate Tumor Suppressor in This Leukemia.
Małgorzata DawidowskaNatalia MaćkowskaMonika DrobnaMaria KosmalskaRoman JaksikDonata SzymczakMalgorzata Jarmuz-SzymczakAlicja Sadowska-KlasaMarzena WojtaszewskaŁukasz SędekTomasz WróbelJan Maciej ZauchaShaji K KumarLewandowski KrzysztofSebastian GiebelMichał WittPublished in: International journal of molecular sciences (2022)
We aimed to identify miRNAs and pathways specifically deregulated in adolescent and young adult (AYA) T-ALL patients. Small RNA-seq showed no major differences between AYA and pediatric T-ALL, but it revealed downregulation of miR-143-3p in T-ALL patients. Prediction algorithms identified several known and putative oncogenes targeted by this miRNA, including KRAS , FGF1 , and FGF9 . Pathway analysis indicated signaling pathways related to cell growth and proliferation, including FGFR signaling and PI3K-AKT signaling, with the majority of genes overrepresented in these pathways being predicted targets of hsa-miR-143-3p. By luciferase reporter assays, we validated direct interactions of this miRNA with KRAS , FGF1 and FGF9 . In cell proliferation assays, we showed reduction of cell growth upon miR-143-3p overexpression in two T-ALL cell lines. Our study is the first description of the miRNA transcriptome in AYA T-ALL patients and the first report on tumor suppressor potential of miR-143-3p in T-ALL. Downregulation of this miRNA in T-ALL patients might contribute to enhanced growth and viability of leukemic cells. We also discuss the potential role of miR-143-3p in FGFR signaling. Although this requires more extensive validation, it might be an interesting direction, since FGFR inhibition proved promising in preclinical studies in various cancers.
Keyphrases
- young adults
- rna seq
- end stage renal disease
- cell proliferation
- signaling pathway
- single cell
- newly diagnosed
- pi k akt
- ejection fraction
- chronic kidney disease
- peritoneal dialysis
- prognostic factors
- acute myeloid leukemia
- gene expression
- stem cells
- oxidative stress
- transcription factor
- drug delivery
- cancer therapy
- deep learning
- patient reported outcomes