Micro-RNA-215 and -375 regulate thymidylate synthase protein expression in pleural mesothelioma and mediate epithelial to mesenchymal transition.
Francesca NapoliIda RapaStefania IzzoAngelica RiguttoRoberta LibenerChiara RigantiPaolo BironzoRiccardo TaulliMauro PapottiMarco VolanteGiorgio ScagliottiLuisella RighiPublished in: Virchows Archiv : an international journal of pathology (2022)
The standard front-line treatment for pleural mesothelioma (PM) is pemetrexed-based chemotherapy, whose major target is thymidylate synthase (TS). In several cancer models, miR-215 and miR-375 have been shown to target TS, while information on these miRNAs in PM are still limited although suggest their role in epithelial to mesenchymal transition. Seventy-one consecutive PM tissues (4 biphasic, 7 sarcomatoid, and 60 epithelioid types) and 16 commercial and patient-derived PM cell lines were screened for TS, miR-215, and miR-375 expression. REN and 570B cells were selected for miR-215 and miR-375 transient transfections to test TS modulation. ZEB1 protein expression in tumor samples was also tested. Moreover, genetic profile was investigated by means of BAP1 and p53 immunohistochemistry. Expression of both miR-215 and miR-375 was significantly higher in epithelioid histotype. Furthermore, inverse correlation between TS protein and both miR-215 and miR-375 expression was found. Efficiently transfected REN and 570B cell lines overexpressing miR-215 and miR-375 showed decreased TS protein levels. Epithelioid PM with a mesenchymal component highlighted by reticulin stain showed significantly higher TS and ZEB1 protein and lower miRNA expression. A better survival was recorded for BAP1 lost/TS low cases. Our data indicate that miR-215 and miR-375 are involved in TS regulation as well as in epithelial-to-mesenchymal transition in PM.
Keyphrases
- long non coding rna
- cell proliferation
- long noncoding rna
- poor prognosis
- particulate matter
- small cell lung cancer
- heavy metals
- stem cells
- binding protein
- squamous cell carcinoma
- small molecule
- radiation therapy
- machine learning
- dna methylation
- risk assessment
- amino acid
- mass spectrometry
- brain injury
- genome wide
- single molecule
- protein protein
- papillary thyroid
- combination therapy
- advanced non small cell lung cancer
- atomic force microscopy