Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.

In an effort to enhance antigen-specific T cell recognition of cancer cells, we have examined numerous modulators of antigen-expression. In this report we demonstrate that twelve different Hsp90 inhibitors (iHsp90) share the ability to increase the expression of differentiation antigens and MHC Clas...

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Main Authors: Timothy J Haggerty, Ian S Dunn, Lenora B Rose, Estelle E Newton, Franco Pandolfi, James T Kurnick
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4264751?pdf=render
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spelling doaj-a3a975b7fb73437abd00701e7f2cabbd2020-11-25T01:28:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01912e11450610.1371/journal.pone.0114506Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.Timothy J HaggertyIan S DunnLenora B RoseEstelle E NewtonFranco PandolfiJames T KurnickIn an effort to enhance antigen-specific T cell recognition of cancer cells, we have examined numerous modulators of antigen-expression. In this report we demonstrate that twelve different Hsp90 inhibitors (iHsp90) share the ability to increase the expression of differentiation antigens and MHC Class I antigens. These iHsp90 are active in several molecular and cellular assays on a series of tumor cell lines, including eleven human melanomas, a murine B16 melanoma, and two human glioma-derived cell lines. Intra-cytoplasmic antibody staining showed that all of the tested iHsp90 increased expression of the melanocyte differentiation antigens Melan-A/MART-1, gp100, and TRP-2, as well as MHC Class I. The gliomas showed enhanced gp100 and MHC staining. Quantitative analysis of mRNA levels showed a parallel increase in message transcription, and a reporter assay shows induction of promoter activity for Melan-A/MART-1 gene. In addition, iHsp90 increased recognition of tumor cells by T cells specific for Melan-A/MART-1. In contrast to direct Hsp90 client proteins, the increased levels of full-length differentiation antigens that result from iHsp90 treatment are most likely the result of transcriptional activation of their encoding genes. In combination, these results suggest that iHsp90 improve recognition of tumor cells by T cells specific for a melanoma-associated antigen as a result of increasing the expressed intracellular antigen pool available for processing and presentation by MHC Class I, along with increased levels of MHC Class I itself. As these Hsp90 inhibitors do not interfere with T cell function, they could have potential for use in immunotherapy of cancer.http://europepmc.org/articles/PMC4264751?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Timothy J Haggerty
Ian S Dunn
Lenora B Rose
Estelle E Newton
Franco Pandolfi
James T Kurnick
spellingShingle Timothy J Haggerty
Ian S Dunn
Lenora B Rose
Estelle E Newton
Franco Pandolfi
James T Kurnick
Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
PLoS ONE
author_facet Timothy J Haggerty
Ian S Dunn
Lenora B Rose
Estelle E Newton
Franco Pandolfi
James T Kurnick
author_sort Timothy J Haggerty
title Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
title_short Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
title_full Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
title_fullStr Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
title_full_unstemmed Heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase T cell recognition of tumor cells.
title_sort heat shock protein-90 inhibitors enhance antigen expression on melanomas and increase t cell recognition of tumor cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description In an effort to enhance antigen-specific T cell recognition of cancer cells, we have examined numerous modulators of antigen-expression. In this report we demonstrate that twelve different Hsp90 inhibitors (iHsp90) share the ability to increase the expression of differentiation antigens and MHC Class I antigens. These iHsp90 are active in several molecular and cellular assays on a series of tumor cell lines, including eleven human melanomas, a murine B16 melanoma, and two human glioma-derived cell lines. Intra-cytoplasmic antibody staining showed that all of the tested iHsp90 increased expression of the melanocyte differentiation antigens Melan-A/MART-1, gp100, and TRP-2, as well as MHC Class I. The gliomas showed enhanced gp100 and MHC staining. Quantitative analysis of mRNA levels showed a parallel increase in message transcription, and a reporter assay shows induction of promoter activity for Melan-A/MART-1 gene. In addition, iHsp90 increased recognition of tumor cells by T cells specific for Melan-A/MART-1. In contrast to direct Hsp90 client proteins, the increased levels of full-length differentiation antigens that result from iHsp90 treatment are most likely the result of transcriptional activation of their encoding genes. In combination, these results suggest that iHsp90 improve recognition of tumor cells by T cells specific for a melanoma-associated antigen as a result of increasing the expressed intracellular antigen pool available for processing and presentation by MHC Class I, along with increased levels of MHC Class I itself. As these Hsp90 inhibitors do not interfere with T cell function, they could have potential for use in immunotherapy of cancer.
url http://europepmc.org/articles/PMC4264751?pdf=render
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