Identification of two unannotated miRNAs in classic Hodgkin lymphoma cell lines.
Adam UstaszewskiJulia PaczkowskaJoanna JaniszewskaStephan H BernhartJulia BeinNúria RussiñolMartin-Leo HansmannVicente ChapaprietaJosé I Martín-SuberoReiner SiebertSylvia HartmannMaciej GiefingPublished in: PloS one (2023)
MicroRNAs (miRNAs) are small non coding RNAs responsible for posttranscriptional regulation of gene expression. Even though almost 2000 precursors have been described so far, additional miRNAs are still being discovered in normal as well as malignant cells. Alike protein coding genes, miRNAs may acquire oncogenic properties in consequence of altered expression or presence of gain or loss of function mutations. In this study we mined datasets from miRNA expression profiling (miRNA-seq) of 7 classic Hodgkin Lymphoma (cHL) cell lines, 10 non-Hodgkin lymphoma (NHL) cell lines and 56 samples of germinal center derived B-cell lymphomas. Our aim was to discover potential novel cHL oncomiRs not reported in miRBase (release 22.1) and expressed in cHL cell lines but no other B-cell lymphomas. We identified six such miRNA candidates in cHL cell lines and verified the expression of two of them encoded at chr2:212678788-212678849 and chr5:168090507-168090561 (GRCh38). Interestingly, we showed that one of the validated miRNAs (located in an intron of the TENM2 gene) is expressed together with its host gene. TENM2 is characterized by hypomethylation and open chromatin around its TSS in cHL cell lines in contrast to NHL cell lines and germinal centre B-cells respectively. It indicates an epigenetic mechanism responsible for aberrant expression of both, the TENM2 gene and the novel miRNA in cHL cell lines. Despite the GO analysis performed with the input of the in silico predicted novel miRNA target genes did not reveal ontologies typically associated with cHL pathogenesis, it pointed to several interesting candidates involved in i.e. lymphopoiesis. These include the lymphoma related BCL11A gene, the IKZF2 gene involved in lymphocyte development or the transcription initiator GTF2H1.
Keyphrases
- genome wide
- genome wide identification
- hodgkin lymphoma
- dna methylation
- gene expression
- poor prognosis
- copy number
- transcription factor
- binding protein
- induced apoptosis
- risk assessment
- single cell
- acute lymphoblastic leukemia
- cell proliferation
- climate change
- cell cycle arrest
- signaling pathway
- magnetic resonance imaging
- minimally invasive
- small molecule
- protein protein
- endoplasmic reticulum stress
- data analysis