Cargando…

Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel

BACKGROUND: TP53 mutations have been associated with resistance to anthracyclines but not to taxanes in breast cancer patients. The MDM2 promoter single nucleotide polymorphism (SNP) T309G increases MDM2 activity and may reduce wild-type p53 protein activity. Here, we explored the predictive and pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Chrisanthar, Ranjan, Knappskog, Stian, Løkkevik, Erik, Anker, Gun, Østenstad, Bjørn, Lundgren, Steinar, Risberg, Terje, Mjaaland, Ingvil, Skjønsberg, Gudbrand, Aas, Turid, Schlichting, Ellen, Fjösne, Hans E., Nysted, Arne, Lillehaug, Johan Richard, Lønning, Per Eystein
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3083424/
https://www.ncbi.nlm.nih.gov/pubmed/21556366
http://dx.doi.org/10.1371/journal.pone.0019249
_version_ 1782202399656509440
author Chrisanthar, Ranjan
Knappskog, Stian
Løkkevik, Erik
Anker, Gun
Østenstad, Bjørn
Lundgren, Steinar
Risberg, Terje
Mjaaland, Ingvil
Skjønsberg, Gudbrand
Aas, Turid
Schlichting, Ellen
Fjösne, Hans E.
Nysted, Arne
Lillehaug, Johan Richard
Lønning, Per Eystein
author_facet Chrisanthar, Ranjan
Knappskog, Stian
Løkkevik, Erik
Anker, Gun
Østenstad, Bjørn
Lundgren, Steinar
Risberg, Terje
Mjaaland, Ingvil
Skjønsberg, Gudbrand
Aas, Turid
Schlichting, Ellen
Fjösne, Hans E.
Nysted, Arne
Lillehaug, Johan Richard
Lønning, Per Eystein
author_sort Chrisanthar, Ranjan
collection PubMed
description BACKGROUND: TP53 mutations have been associated with resistance to anthracyclines but not to taxanes in breast cancer patients. The MDM2 promoter single nucleotide polymorphism (SNP) T309G increases MDM2 activity and may reduce wild-type p53 protein activity. Here, we explored the predictive and prognostic value of TP53 and CHEK2 mutation status together with MDM2 SNP309 genotype in stage III breast cancer patients receiving paclitaxel or epirubicin monotherapy. EXPERIMENTAL DESIGN: Each patient was randomly assigned to treatment with epirubicin 90 mg/m(2) (n = 109) or paclitaxel 200 mg/m(2) (n = 114) every 3rd week as monotherapy for 4–6 cycles. Patients obtaining a suboptimal response on first-line treatment requiring further chemotherapy received the opposite regimen. Time from last patient inclusion to follow-up censoring was 69 months. Each patient had snap-frozen tumor tissue specimens collected prior to commencing chemotherapy. PRINCIPAL FINDINGS: While TP53 and CHEK2 mutations predicted resistance to epirubicin, MDM2 status did not. Neither TP53/CHEK2 mutations nor MDM2 status was associated with paclitaxel response. Remarkably, TP53 mutations (p = 0.007) but also MDM2 309TG/GG genotype status (p = 0.012) were associated with a poor disease-specific survival among patients having paclitaxel but not patients having epirubicin first-line. The effect of MDM2 status was observed among individuals harbouring wild-type TP53 (p = 0.039) but not among individuals with TP53 mutated tumors (p>0.5). CONCLUSION: TP53 and CHEK2 mutations were associated with lack of response to epirubicin monotherapy. In contrast, TP53 mutations and MDM2 309G allele status conferred poor disease-specific survival among patients treated with primary paclitaxel but not epirubicin monotherapy.
format Text
id pubmed-3083424
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-30834242011-05-09 Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel Chrisanthar, Ranjan Knappskog, Stian Løkkevik, Erik Anker, Gun Østenstad, Bjørn Lundgren, Steinar Risberg, Terje Mjaaland, Ingvil Skjønsberg, Gudbrand Aas, Turid Schlichting, Ellen Fjösne, Hans E. Nysted, Arne Lillehaug, Johan Richard Lønning, Per Eystein PLoS One Research Article BACKGROUND: TP53 mutations have been associated with resistance to anthracyclines but not to taxanes in breast cancer patients. The MDM2 promoter single nucleotide polymorphism (SNP) T309G increases MDM2 activity and may reduce wild-type p53 protein activity. Here, we explored the predictive and prognostic value of TP53 and CHEK2 mutation status together with MDM2 SNP309 genotype in stage III breast cancer patients receiving paclitaxel or epirubicin monotherapy. EXPERIMENTAL DESIGN: Each patient was randomly assigned to treatment with epirubicin 90 mg/m(2) (n = 109) or paclitaxel 200 mg/m(2) (n = 114) every 3rd week as monotherapy for 4–6 cycles. Patients obtaining a suboptimal response on first-line treatment requiring further chemotherapy received the opposite regimen. Time from last patient inclusion to follow-up censoring was 69 months. Each patient had snap-frozen tumor tissue specimens collected prior to commencing chemotherapy. PRINCIPAL FINDINGS: While TP53 and CHEK2 mutations predicted resistance to epirubicin, MDM2 status did not. Neither TP53/CHEK2 mutations nor MDM2 status was associated with paclitaxel response. Remarkably, TP53 mutations (p = 0.007) but also MDM2 309TG/GG genotype status (p = 0.012) were associated with a poor disease-specific survival among patients having paclitaxel but not patients having epirubicin first-line. The effect of MDM2 status was observed among individuals harbouring wild-type TP53 (p = 0.039) but not among individuals with TP53 mutated tumors (p>0.5). CONCLUSION: TP53 and CHEK2 mutations were associated with lack of response to epirubicin monotherapy. In contrast, TP53 mutations and MDM2 309G allele status conferred poor disease-specific survival among patients treated with primary paclitaxel but not epirubicin monotherapy. Public Library of Science 2011-04-27 /pmc/articles/PMC3083424/ /pubmed/21556366 http://dx.doi.org/10.1371/journal.pone.0019249 Text en Chrisanthar et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chrisanthar, Ranjan
Knappskog, Stian
Løkkevik, Erik
Anker, Gun
Østenstad, Bjørn
Lundgren, Steinar
Risberg, Terje
Mjaaland, Ingvil
Skjønsberg, Gudbrand
Aas, Turid
Schlichting, Ellen
Fjösne, Hans E.
Nysted, Arne
Lillehaug, Johan Richard
Lønning, Per Eystein
Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title_full Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title_fullStr Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title_full_unstemmed Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title_short Predictive and Prognostic Impact of TP53 Mutations and MDM2 Promoter Genotype in Primary Breast Cancer Patients Treated with Epirubicin or Paclitaxel
title_sort predictive and prognostic impact of tp53 mutations and mdm2 promoter genotype in primary breast cancer patients treated with epirubicin or paclitaxel
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3083424/
https://www.ncbi.nlm.nih.gov/pubmed/21556366
http://dx.doi.org/10.1371/journal.pone.0019249
work_keys_str_mv AT chrisantharranjan predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT knappskogstian predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT løkkevikerik predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT ankergun predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT østenstadbjørn predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT lundgrensteinar predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT risbergterje predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT mjaalandingvil predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT skjønsberggudbrand predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT aasturid predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT schlichtingellen predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT fjosnehanse predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT nystedarne predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT lillehaugjohanrichard predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel
AT lønningpereystein predictiveandprognosticimpactoftp53mutationsandmdm2promotergenotypeinprimarybreastcancerpatientstreatedwithepirubicinorpaclitaxel