circPVT1 and PVT1/AKT3 show a role in cell proliferation, apoptosis, and tumor subtype-definition in small cell lung cancer.
Doron TolomeoDebora TraversaSantina VenutoKaroline K EbbesenJuan Luis García-RodríguezGrazia TammaMarianna RanieriGiorgia SimonettiMartina GhettiMatteo PaganelliGrazia VisciArcangelo LisoKlaas KokLucia Anna MuscarellaFederico Pio FabrizioMaria Antonia FrassanitoAurelia LamanuzziIlaria SaltarellaAntonio Giovanni SolimandoAlessandro FaticaZaira IannielloRené Massimiliano MarsanoAntonio PalazzoAmalia AzzaritiVito LongoStefania TommasiDomenico GalettaAnnamaria CatinoAlfredo ZitoTommaso MazzaAlessandro NapoliGiovanni MartinelliJørgen KjemsLasse Sommer KristensenAngelo VaccaClelia Tiziana StorlazziPublished in: Genes, chromosomes & cancer (2022)
Small cell lung cancer (SCLC) is treated as a homogeneous disease, although the expression of NEUROD1, ASCL1, POU2F3, and YAP1 identifies distinct molecular subtypes. The MYC oncogene, amplified in SCLC, was recently shown to act as a lineage-specific factor to associate subtypes with histological classes. Indeed, MYC-driven SCLCs show a distinct metabolic profile and drug sensitivity. To disentangle their molecular features, we focused on the co-amplified PVT1, frequently overexpressed and originating circular (circRNA) and chimeric RNAs. We analyzed hsa_circ_0001821 (circPVT1) and PVT1/AKT3 (chimPVT1) as examples of such transcripts, respectively, to unveil their tumorigenic contribution to SCLC. In detail, circPVT1 activated a pro-proliferative and anti-apoptotic program when over-expressed in lung cells, and knockdown of chimPVT1 induced a decrease in cell growth and an increase of apoptosis in SCLC in vitro. Moreover, the investigated PVT1 transcripts underlined a functional connection between MYC and YAP1/POU2F3, suggesting that they contribute to the transcriptional landscape associated with MYC amplification. In conclusion, we have uncovered a functional role of circular and chimeric PVT1 transcripts in SCLC; these entities may prove useful as novel biomarkers in MYC-amplified tumors.
Keyphrases
- small cell lung cancer
- cell cycle arrest
- cell proliferation
- transcription factor
- cell death
- oxidative stress
- signaling pathway
- induced apoptosis
- endoplasmic reticulum stress
- pi k akt
- cell therapy
- single cell
- poor prognosis
- emergency department
- cell cycle
- high glucose
- diabetic rats
- anti inflammatory
- mesenchymal stem cells
- dna methylation
- high resolution
- quality improvement
- newly diagnosed