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An mRNA expression-based signature for oncogene-induced replication-stress

Oncogene-induced replication stress characterizes many aggressive cancers. Several treatments are being developed that target replication stress, however, identification of tumors with high levels of replication stress remains challenging. We describe a gene expression signature of oncogene-induced...

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Autores principales: Llobet, Sergi Guerrero, Bhattacharya, Arkajyoti, Everts, Marieke, Kok, Klaas, van der Vegt, Bert, Fehrmann, Rudolf S.N., van Vugt, Marcel A.T.M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7612401/
https://www.ncbi.nlm.nih.gov/pubmed/35091678
http://dx.doi.org/10.1038/s41388-021-02162-0
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author Llobet, Sergi Guerrero
Bhattacharya, Arkajyoti
Everts, Marieke
Kok, Klaas
van der Vegt, Bert
Fehrmann, Rudolf S.N.
van Vugt, Marcel A.T.M.
author_facet Llobet, Sergi Guerrero
Bhattacharya, Arkajyoti
Everts, Marieke
Kok, Klaas
van der Vegt, Bert
Fehrmann, Rudolf S.N.
van Vugt, Marcel A.T.M.
author_sort Llobet, Sergi Guerrero
collection PubMed
description Oncogene-induced replication stress characterizes many aggressive cancers. Several treatments are being developed that target replication stress, however, identification of tumors with high levels of replication stress remains challenging. We describe a gene expression signature of oncogene-induced replication stress. A panel of triple-negative breast cancer (TNBC) and non-transformed cell lines were engineered to overexpress CDC25A, CCNE1 or MYC, which resulted in slower replication kinetics. RNA sequencing analysis revealed a set of 52 commonly upregulated genes. In parallel, mRNA expression analysis of patient-derived tumor samples (TCGA, n=10,592) also revealed differential gene expression in tumors with amplification of oncogenes that trigger replication stress (CDC25A, CCNE1, MYC, CCND1, MYB, MOS, KRAS, ERBB2, and E2F1). Upon integration, we identified a six-gene signature of oncogene-induced replication stress (NAT10, DDX27, ZNF48, C8ORF33, MOCS3, and MPP6). Immunohistochemical analysis of NAT10 in breast cancer samples (n=330) showed strong correlation with expression of phospho-RPA (R=0.451, p=1.82x10(-20)) and γH2AX (R=0.304, p=2.95x10(-9)). Finally, we applied our oncogene-induced replication stress signature to patient samples from TCGA (n=8,862) and GEO (n=13,912) to define the levels of replication stress across 27 tumor subtypes, identifying diffuse large B cell lymphoma, ovarian cancer, TNBC and colorectal carcinoma as cancer subtypes with high levels of oncogene-induced replication stress.
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spelling pubmed-76124012022-02-28 An mRNA expression-based signature for oncogene-induced replication-stress Llobet, Sergi Guerrero Bhattacharya, Arkajyoti Everts, Marieke Kok, Klaas van der Vegt, Bert Fehrmann, Rudolf S.N. van Vugt, Marcel A.T.M. Oncogene Article Oncogene-induced replication stress characterizes many aggressive cancers. Several treatments are being developed that target replication stress, however, identification of tumors with high levels of replication stress remains challenging. We describe a gene expression signature of oncogene-induced replication stress. A panel of triple-negative breast cancer (TNBC) and non-transformed cell lines were engineered to overexpress CDC25A, CCNE1 or MYC, which resulted in slower replication kinetics. RNA sequencing analysis revealed a set of 52 commonly upregulated genes. In parallel, mRNA expression analysis of patient-derived tumor samples (TCGA, n=10,592) also revealed differential gene expression in tumors with amplification of oncogenes that trigger replication stress (CDC25A, CCNE1, MYC, CCND1, MYB, MOS, KRAS, ERBB2, and E2F1). Upon integration, we identified a six-gene signature of oncogene-induced replication stress (NAT10, DDX27, ZNF48, C8ORF33, MOCS3, and MPP6). Immunohistochemical analysis of NAT10 in breast cancer samples (n=330) showed strong correlation with expression of phospho-RPA (R=0.451, p=1.82x10(-20)) and γH2AX (R=0.304, p=2.95x10(-9)). Finally, we applied our oncogene-induced replication stress signature to patient samples from TCGA (n=8,862) and GEO (n=13,912) to define the levels of replication stress across 27 tumor subtypes, identifying diffuse large B cell lymphoma, ovarian cancer, TNBC and colorectal carcinoma as cancer subtypes with high levels of oncogene-induced replication stress. 2022-02-18 2022-01-29 /pmc/articles/PMC7612401/ /pubmed/35091678 http://dx.doi.org/10.1038/s41388-021-02162-0 Text en https://www.springernature.com/gp/open-research/policies/accepted-manuscript-termsUsers may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms
spellingShingle Article
Llobet, Sergi Guerrero
Bhattacharya, Arkajyoti
Everts, Marieke
Kok, Klaas
van der Vegt, Bert
Fehrmann, Rudolf S.N.
van Vugt, Marcel A.T.M.
An mRNA expression-based signature for oncogene-induced replication-stress
title An mRNA expression-based signature for oncogene-induced replication-stress
title_full An mRNA expression-based signature for oncogene-induced replication-stress
title_fullStr An mRNA expression-based signature for oncogene-induced replication-stress
title_full_unstemmed An mRNA expression-based signature for oncogene-induced replication-stress
title_short An mRNA expression-based signature for oncogene-induced replication-stress
title_sort mrna expression-based signature for oncogene-induced replication-stress
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7612401/
https://www.ncbi.nlm.nih.gov/pubmed/35091678
http://dx.doi.org/10.1038/s41388-021-02162-0
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