A wide range of malignancies presents amplification (MNA) or dysregulation. is associated with poor prognosis and its over-expression leads to several dysregulations including metabolic reprogramming, mitochondria alteration, and cancer stem cell phenotype. Some hints suggest that overexpression leads to cancer immune-escape. However, this relationship presents various open questions. Our work investigated in details the relationship of with the immune system, finding a correlated immune-suppressive phenotype in neuroblastoma (NB) and different cancers where is up-regulated. We found a downregulated Th1-lymphocytes/M1-Macrophages axis and upregulated Th2-lymphocytes/M2-macrophages in MNA NB patients. Moreover, we unveiled a complex immune network orchestrated by N-Myc and we identified 16 genes modules associated to MNA NB. We also identified a -associated immune signature that has a prognostic value in NB and recapitulates clinical features. Our signature also discriminates patients with poor survival in non-MNA NB patients where expression is not discriminative. Finally, we showed that targeted inhibition of by BGA002 (anti- antigene PNA) is able to restore NK sensibility in -expressing NB cells. Overall, our study unveils a driven immune network in NB and shows a therapeutic option to restore sensibility to immune cells.
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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7951059 | PMC |
http://dx.doi.org/10.3389/fonc.2021.625207 | DOI Listing |
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