Cargando…

Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer

Rare germline pathogenic TP53 missense variants often predispose to a wide spectrum of tumors characterized by Li-Fraumeni syndrome (LFS) but a subset of variants is also seen in families with exclusively hereditary breast cancer (HBC) outcomes. We have developed a logistic regression model with the...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Yaxuan, Axell, Olga, van Leeuwen, Tom, Konrat, Robert, Kharaziha, Pedram, Larsson, Catharina, Wright, Anthony P. H., Bajalica-Lagercrantz, Svetlana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8231809/
https://www.ncbi.nlm.nih.gov/pubmed/34198491
http://dx.doi.org/10.3390/ijms22126345
_version_ 1783713499331952640
author Liu, Yaxuan
Axell, Olga
van Leeuwen, Tom
Konrat, Robert
Kharaziha, Pedram
Larsson, Catharina
Wright, Anthony P. H.
Bajalica-Lagercrantz, Svetlana
author_facet Liu, Yaxuan
Axell, Olga
van Leeuwen, Tom
Konrat, Robert
Kharaziha, Pedram
Larsson, Catharina
Wright, Anthony P. H.
Bajalica-Lagercrantz, Svetlana
author_sort Liu, Yaxuan
collection PubMed
description Rare germline pathogenic TP53 missense variants often predispose to a wide spectrum of tumors characterized by Li-Fraumeni syndrome (LFS) but a subset of variants is also seen in families with exclusively hereditary breast cancer (HBC) outcomes. We have developed a logistic regression model with the aim of predicting LFS and HBC outcomes, based on the predicted effects of individual TP53 variants on aspects of protein conformation. A total of 48 missense variants either unique for LFS (n = 24) or exclusively reported in HBC (n = 24) were included. LFS-variants were over-represented in residues tending to be buried in the core of the tertiary structure of TP53 (p = 0.0014). The favored logistic regression model describes disease outcome in terms of explanatory variables related to the surface or buried status of residues as well as their propensity to contribute to protein compactness or protein-protein interactions. Reduced, internally validated models discriminated well between LFS and HBC (C-statistic = 0.78−0.84; equivalent to the area under the ROC (receiver operating characteristic) curve), had a low risk for over-fitting and were well calibrated in relation to the known outcome risk. In conclusion, this study presents a phenotypic prediction model of LFS and HBC risk for germline TP53 missense variants, in an attempt to provide a complementary tool for future decision making and clinical handling.
format Online
Article
Text
id pubmed-8231809
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-82318092021-06-26 Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer Liu, Yaxuan Axell, Olga van Leeuwen, Tom Konrat, Robert Kharaziha, Pedram Larsson, Catharina Wright, Anthony P. H. Bajalica-Lagercrantz, Svetlana Int J Mol Sci Article Rare germline pathogenic TP53 missense variants often predispose to a wide spectrum of tumors characterized by Li-Fraumeni syndrome (LFS) but a subset of variants is also seen in families with exclusively hereditary breast cancer (HBC) outcomes. We have developed a logistic regression model with the aim of predicting LFS and HBC outcomes, based on the predicted effects of individual TP53 variants on aspects of protein conformation. A total of 48 missense variants either unique for LFS (n = 24) or exclusively reported in HBC (n = 24) were included. LFS-variants were over-represented in residues tending to be buried in the core of the tertiary structure of TP53 (p = 0.0014). The favored logistic regression model describes disease outcome in terms of explanatory variables related to the surface or buried status of residues as well as their propensity to contribute to protein compactness or protein-protein interactions. Reduced, internally validated models discriminated well between LFS and HBC (C-statistic = 0.78−0.84; equivalent to the area under the ROC (receiver operating characteristic) curve), had a low risk for over-fitting and were well calibrated in relation to the known outcome risk. In conclusion, this study presents a phenotypic prediction model of LFS and HBC risk for germline TP53 missense variants, in an attempt to provide a complementary tool for future decision making and clinical handling. MDPI 2021-06-14 /pmc/articles/PMC8231809/ /pubmed/34198491 http://dx.doi.org/10.3390/ijms22126345 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Yaxuan
Axell, Olga
van Leeuwen, Tom
Konrat, Robert
Kharaziha, Pedram
Larsson, Catharina
Wright, Anthony P. H.
Bajalica-Lagercrantz, Svetlana
Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title_full Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title_fullStr Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title_full_unstemmed Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title_short Association between Predicted Effects of TP53 Missense Variants on Protein Conformation and Their Phenotypic Presentation as Li-Fraumeni Syndrome or Hereditary Breast Cancer
title_sort association between predicted effects of tp53 missense variants on protein conformation and their phenotypic presentation as li-fraumeni syndrome or hereditary breast cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8231809/
https://www.ncbi.nlm.nih.gov/pubmed/34198491
http://dx.doi.org/10.3390/ijms22126345
work_keys_str_mv AT liuyaxuan associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT axellolga associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT vanleeuwentom associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT konratrobert associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT kharazihapedram associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT larssoncatharina associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT wrightanthonyph associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer
AT bajalicalagercrantzsvetlana associationbetweenpredictedeffectsoftp53missensevariantsonproteinconformationandtheirphenotypicpresentationaslifraumenisyndromeorhereditarybreastcancer