Identification of TNFRSF1A as a novel regulator of carfilzomib resistance in multiple myeloma
Multiple myeloma (MM) is a hematological tumor with high mortality and recurrence rate. Carfilzomib is a new-generation proteasome inhibitor that is used as the first-line therapy for MM. However, the development of drug resistance is a pervasive obstacle to treating MM. Therefore, elucidating the d...
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Veröffentlicht in: | Oncology research 2024-01, Vol.32 (2), p.325-337 |
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Sprache: | eng |
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Zusammenfassung: | Multiple myeloma (MM) is a hematological tumor with high mortality and recurrence rate. Carfilzomib is a new-generation proteasome inhibitor that is used as the first-line therapy for MM. However, the development of drug resistance is a pervasive obstacle to treating MM. Therefore, elucidating the drug resistance mechanisms is conducive to the formulation of novel therapeutic therapies. To elucidate the mechanisms of carfilzomib resistance, we retrieved the GSE78069 microarray dataset containing carfilzomib-resistant LP-1 MM cells and parental MM cells. Differential gene expression analyses revealed major alterations in the major histocompatibility complex (MHC) and cell adhesion molecules. The upregulation of the tumor necrosis factor (TNF) receptor superfamily member 1A (
) gene was accompanied by the downregulation of MHC genes and cell adhesion molecules. Furthermore, to investigate the roles of these genes, we established a carfilzomib-resistant cell model and observed that carfilzomib resistance induced
overexpression and
silencing reversed carfilzomib resistance and reactivated the expression of cell adhesion molecules. Furthermore,
silencing suppressed the tumorigenesis of MM cells in immunocompetent mice, indicating that
may lead to carfilzomib resistance by dampening antitumor immunity. Furthermore, our results indicated that
overexpression conferred carfilzomib resistance in MM cells and suppressed the expression of MHC genes and cell adhesion molecules. The suppression of MHC genes and cell adhesion molecules may impair the interaction between immune cells and cancer cells to impair antitumor immunity. Future studies are warranted to further investigate the signaling pathway underlying the regulatory role of
in MM cells. |
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ISSN: | 1555-3906 0965-0407 1555-3906 |
DOI: | 10.32604/or.2023.030770 |