For malignant pleural mesothelioma (MPM) novel therapeutic strategies are urgently needed. In a previous study, we identified 51 putative cancer genes over-expressed in MPM tissues and cell lines. Here, we deepened the study on nine of them (ASS1,EIF4G1,GALNT7,GLUT1,IGF2BP3(IMP3),ITGA4,RAN,SOD1, andTHBS2) to ascertain whether they are truly mesothelial cancer driver genes (CDGs) or genes overexpressed in an adaptive response to the tumoral progression ("passenger genes"). Through a fast siRNA-based screening, we evaluated the consequences of gene depletion on migration, proliferation, colony formation capabilities, and caspase activities of four MPM (Mero-14, Mero-25, IST-Mes2, and NCI-H28) and one SV40-immortalized mesothelial cell line (MeT-5A) as a non-malignant model. The depletion ofEIF4G1andRANsignificantly reduced cell proliferation and colony formation and increased caspase activity. In particular, the findings for RAN resemble those observed for other types of cancer. Thus, we evaluated the in vitro effects of importazole (IPZ), a small molecule inhibitor of the interaction between RAN and importin-beta. We showed that IPZ could have effects similar to those observed followingRANgene silencing. We also found that primary cell lines from one out of three MPM patients were sensitive to IPZ. AsEIF4G1andRANdeserve further investigation with additional in vitro and in vivo studies, they emerged as promising CDGs, suggesting that their upregulation could play a role in mesothelial tumorigenesis and aggressiveness. Furthermore, present data propose the molecular pathways dependent on RAN as a putative pharmacological target for MPM patients in the view of a future personalized medicine.

Dell'Anno, I., Barbarino, M., Barone, E., Giordano, A., Luzzi, L., Bottaro, M., et al. (2020). Eif4g1 and ran as possible drivers for malignant pleural mesothelioma. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21(14), 1-18 [10.3390/ijms21144856].

Eif4g1 and ran as possible drivers for malignant pleural mesothelioma

Melaiu O.;
2020-01-01

Abstract

For malignant pleural mesothelioma (MPM) novel therapeutic strategies are urgently needed. In a previous study, we identified 51 putative cancer genes over-expressed in MPM tissues and cell lines. Here, we deepened the study on nine of them (ASS1,EIF4G1,GALNT7,GLUT1,IGF2BP3(IMP3),ITGA4,RAN,SOD1, andTHBS2) to ascertain whether they are truly mesothelial cancer driver genes (CDGs) or genes overexpressed in an adaptive response to the tumoral progression ("passenger genes"). Through a fast siRNA-based screening, we evaluated the consequences of gene depletion on migration, proliferation, colony formation capabilities, and caspase activities of four MPM (Mero-14, Mero-25, IST-Mes2, and NCI-H28) and one SV40-immortalized mesothelial cell line (MeT-5A) as a non-malignant model. The depletion ofEIF4G1andRANsignificantly reduced cell proliferation and colony formation and increased caspase activity. In particular, the findings for RAN resemble those observed for other types of cancer. Thus, we evaluated the in vitro effects of importazole (IPZ), a small molecule inhibitor of the interaction between RAN and importin-beta. We showed that IPZ could have effects similar to those observed followingRANgene silencing. We also found that primary cell lines from one out of three MPM patients were sensitive to IPZ. AsEIF4G1andRANdeserve further investigation with additional in vitro and in vivo studies, they emerged as promising CDGs, suggesting that their upregulation could play a role in mesothelial tumorigenesis and aggressiveness. Furthermore, present data propose the molecular pathways dependent on RAN as a putative pharmacological target for MPM patients in the view of a future personalized medicine.
2020
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MED/05 - PATOLOGIA CLINICA
English
EIF4G1
MPM
RAN
cancer driving gene
importazole
siRNA
Carcinogenesis
Cell Line, Tumor
Cell Proliferation
Epithelium
Eukaryotic Initiation Factor-4G
Gene Expression Regulation, Neoplastic
Humans
Mesothelioma, Malignant
Pleural Neoplasms
Quinazolines
RNA, Small Interfering
Small Molecule Libraries
beta Karyopherins
ran GTP-Binding Protein
Dell'Anno, I., Barbarino, M., Barone, E., Giordano, A., Luzzi, L., Bottaro, M., et al. (2020). Eif4g1 and ran as possible drivers for malignant pleural mesothelioma. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21(14), 1-18 [10.3390/ijms21144856].
Dell'Anno, I; Barbarino, M; Barone, E; Giordano, A; Luzzi, L; Bottaro, M; Migliore, L; Agostini, S; Melani, A; Melaiu, O; Catalano, C; Cipollini, M; Silvestri, R; Corrado, A; Gemignani, F; Landi, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/305968
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