Differential expression of HLA-linked HSP70-1 and HSP70-2 heat shock genes in melanoma cell lines does not affect killing by cytotoxic T cells

1997 ◽  
Vol 56 ◽  
pp. 379
Author(s):  
R. Dressel ◽  
J. Johnson ◽  
E. Günther
Cancers ◽  
2020 ◽  
Vol 12 (10) ◽  
pp. 2998
Author(s):  
Patrycja Czerwinska ◽  
Anna Maria Jaworska ◽  
Nikola Agata Wlodarczyk ◽  
Andrzej Adam Mackiewicz

TRIM28 emerged as a guard of the intrinsic “state of cell differentiation”, facilitating self-renewal of pluripotent stem cells. Recent reports imply TRIM28 engagement in cancer stem cell (CSC) maintenance, although the exact mechanism remains unresolved. TRIM28 high expression is associated with worse melanoma patient outcomes. Here, we investigated the association between TRIM28 level and melanoma stemness, and aligned it with the antitumor immune response to find the mechanism of “stemness high/immune low” melanoma phenotype acquisition. Based on the SKCM TCGA data, the TRIM28 expression profile, clinicopathological features, expression of correlated genes, and the level of stemness and immune scores were analyzed in patient samples. The biological function for differentially expressed genes was annotated with GSEA. Results were validated with additional datasets from R2: Genomics Analysis and Visualization Platform and in vitro with a panel of seven melanoma cell lines. All statistical analyses were accomplished using GraphPad Prism 8. TRIM28HIGH-expressing melanoma patients are characterized by worse outcomes and significantly different gene expression profiles than the TRIM28NORM cohort. TRIM28 high level related to higher melanoma stemness as measured with several distinct scores and TRIM28HIGH-expressing melanoma cell lines possess the greater potential of melanosphere formation. Moreover, TRIM28HIGH melanoma tumors were significantly depleted with infiltrating immune cells, especially cytotoxic T cells, helper T cells, and B cells. Furthermore, TRIM28 emerged as a good predictor of “stemness high/immune low” melanoma phenotype. Our data indicate that TRIM28 might facilitate this phenotype by direct repression of interferon signaling. TRIM28 emerged as a direct link between stem cell-like phenotype and attenuated antitumor immune response in melanoma, although further studies are needed to evaluate the direct mechanism of TRIM28-mediated stem-like phenotype acquisition.


BMC Cancer ◽  
2018 ◽  
Vol 18 (1) ◽  
Author(s):  
Jingjing Xiao ◽  
Michael E. Egger ◽  
Kelly M. McMasters ◽  
Hongying Hao

1989 ◽  
Vol 170 (3) ◽  
pp. 621-635 ◽  
Author(s):  
R Versteeg ◽  
K M Krüse-Wolters ◽  
A C Plomp ◽  
A van Leeuwen ◽  
N J Stam ◽  
...  

The c-myc oncogene downregulates class I HLA expression in human melanoma. The major class I HLA antigens are encoded by three loci, A, B, and C, and we investigated whether these loci are suppressed equally by c-myc. In three melanoma cell lines with high c-myc expression, we analyzed mRNA, protein, and cell surface expression of the class I HLA antigens. Whereas the HLA-B locus expression was found to be strongly reduced, the HLA-A locus was expressed normally. Analysis of c-myc-transfected clones of two melanoma cell lines confirmed that c-myc preferentially suppresses the class I HLA-B locus. Immunohistochemical analysis of fresh melanoma lesions also showed that in the tumors the HLA-A loci are expressed normally, while on the majority of tumor cells no HLA-B antigen expression was found. This downregulation may have consequences for the recognition of malignant cells by tumor-infiltrating lymphocytes. Our results predict that HLA-B-restricted cytotoxic T cells will be unable to kill high c-myc-expressing melanoma cells.


1993 ◽  
Vol 54 (3) ◽  
pp. 494-498 ◽  
Author(s):  
Carmen Scheibenbogen ◽  
Ulrich Keilholz ◽  
Werner Hunstein ◽  
Stefan Meuer ◽  
Thomas Dengler ◽  
...  

1984 ◽  
Vol 34 (5) ◽  
pp. 651-655 ◽  
Author(s):  
Umberto Ferrini ◽  
Rita Falcioni ◽  
Andrea Delpino ◽  
Renato Cavaliere ◽  
Gabriella Zupi ◽  
...  

1998 ◽  
Vol 16 ◽  
pp. S64
Author(s):  
Sayoko Hirai ◽  
Yurie Tada ◽  
Tsutomu Muramatu ◽  
Mitsuo Hatoko ◽  
Tosihiko Shirai

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