POLE Proofreading Mutations Elicit an Antitumor Immune Response in Endometrial Cancer.

نویسندگان

  • Inge C van Gool
  • Florine A Eggink
  • Luke Freeman-Mills
  • Ellen Stelloo
  • Emanuele Marchi
  • Marco de Bruyn
  • Claire Palles
  • Remi A Nout
  • Cor D de Kroon
  • Elisabeth M Osse
  • Paul Klenerman
  • Carien L Creutzberg
  • Ian Pm Tomlinson
  • Vincent Thbm Smit
  • Hans W Nijman
  • Tjalling Bosse
  • David N Church
چکیده

PURPOSE Recent studies have shown that 7% to 12% of endometrial cancers are ultramutated due to somatic mutation in the proofreading exonuclease domain of the DNA replicase POLE. Interestingly, these tumors have an excellent prognosis. In view of the emerging data linking mutation burden, immune response, and clinical outcome in cancer, we investigated whether POLE-mutant endometrial cancers showed evidence of increased immunogenicity. EXPERIMENTAL DESIGN We examined immune infiltration and activation according to tumor POLE proofreading mutation in a molecularly defined endometrial cancer cohort including 47 POLE-mutant tumors. We sought to confirm our results by analysis of RNAseq data from the TCGA endometrial cancer series and used the same series to examine whether differences in immune infiltration could be explained by an enrichment of immunogenic neoepitopes in POLE-mutant endometrial cancers. RESULTS Compared with other endometrial cancers, POLE mutants displayed an enhanced cytotoxic T-cell response, evidenced by increased numbers of CD8(+) tumor-infiltrating lymphocytes and CD8A expression, enrichment for a tumor-infiltrating T-cell gene signature, and strong upregulation of the T-cell cytotoxic differentiation and effector markers T-bet, Eomes, IFNG, PRF, and granzyme B. This was accompanied by upregulation of T-cell exhaustion markers, consistent with chronic antigen exposure. In silico analysis confirmed that POLE-mutant cancers are predicted to display more antigenic neoepitopes than other endometrial cancers, providing a potential explanation for our findings. CONCLUSIONS Ultramutated POLE proofreading-mutant endometrial cancers are characterized by a robust intratumoral T-cell response, which correlates with, and may be caused by an enrichment of antigenic neopeptides. Our study provides a plausible mechanism for the excellent prognosis of these cancers.

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منابع مشابه

Biology of Human Tumors POLE Proofreading Mutations Elicit an Antitumor Immune Response in Endometrial Cancer

Purpose: Recent studies have shown that 7% to 12% of endometrial cancers are ultramutated due to somatic mutation in the proofreading exonuclease domain of the DNA replicase POLE. Interestingly, these tumors have an excellent prognosis. In view of the emerging data linking mutation burden, immune response, and clinical outcome in cancer, we investigatedwhether POLE-mutant endometrial cancers sh...

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POLE proofreading mutation, immune response and prognosis in endometrial cancer

Endometrial cancers (ECs) with POLE proofreading mutations are typified by ultramutation and excellent prognosis. We investigated whether these were related, and found that POLE-mutant ECs display a robust T cell response that corresponds to an enrichment of antigenic tumor neopeptides. Enhanced immunogenicity may explain the favorable outcome of POLE-mutant ECs.

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POLE proofreading mutations elicit an anti-tumor immune response in endometrial cancer Running title: POLE mutations and immune response in endometrial cancer Authors:

Affiliations: 1 Department of Pathology, Leiden University Medical Center, Albinusdreef 2, Postbus 9600, 2300 RC Leiden, The Netherlands 2 University of Groningen, University Medical Center Groningen, Department of Obstetrics and Gynecology, PO 30.001 9700 RB Groningen, The Netherlands 3 Molecular and Population Genetics Laboratory, The Wellcome Trust Centre for Human Genetics, University of Ox...

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DNA polymerase ɛ and δ exonuclease domain mutations in endometrial cancer

Accurate duplication of DNA prior to cell division is essential to suppress mutagenesis and tumour development. The high fidelity of eukaryotic DNA replication is due to a combination of accurate incorporation of nucleotides into the nascent DNA strand by DNA polymerases, the recognition and removal of mispaired nucleotides (proofreading) by the exonuclease activity of DNA polymerases δ and ε, ...

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Germline and somatic polymerase ε and δ mutations define a new class of hypermutated colorectal and endometrial cancers

Polymerases ε and δ are the main enzymes that replicate eukaryotic DNA. Accurate replication occurs through Watson-Crick base pairing and also through the action of the polymerases' exonuclease (proofreading) domains. We have recently shown that germline exonuclease domain mutations (EDMs) of POLE and POLD1 confer a high risk of multiple colorectal adenomas and carcinoma (CRC). POLD1 mutations ...

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عنوان ژورنال:
  • Clinical cancer research : an official journal of the American Association for Cancer Research

دوره 21 14  شماره 

صفحات  -

تاریخ انتشار 2015