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Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast

Terminal duct lobular units (TDLUs) are the predominant anatomical structures where breast cancers originate. Having lesser degrees of age-related TDLU involution, measured as higher TDLUs counts or more epithelial TDLU substructures (acini), is related to increased breast cancer risk among women wi...

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Autores principales: Bodelon, Clara, Oh, Hannah, Derkach, Andriy, Sampson, Joshua N., Sprague, Brian L., Vacek, Pamela, Weaver, Donald L., Fan, Shaoqi, Palakal, Maya, Papathomas, Daphne, Xiang, Jackie, Patel, Deesha A., Linville, Laura, Clare, Susan E., Visscher, Daniel W., Mies, Carolyn, Hewitt, Stephen M., Brinton, Louise A., Storniolo, Anna Maria V., He, Chunyan, Chanock, Stephen J., Garcia-Closas, Montserrat, Gierach, Gretchen L., Figueroa, Jonine D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477555/
https://www.ncbi.nlm.nih.gov/pubmed/32964115
http://dx.doi.org/10.1038/s41523-020-00184-7
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author Bodelon, Clara
Oh, Hannah
Derkach, Andriy
Sampson, Joshua N.
Sprague, Brian L.
Vacek, Pamela
Weaver, Donald L.
Fan, Shaoqi
Palakal, Maya
Papathomas, Daphne
Xiang, Jackie
Patel, Deesha A.
Linville, Laura
Clare, Susan E.
Visscher, Daniel W.
Mies, Carolyn
Hewitt, Stephen M.
Brinton, Louise A.
Storniolo, Anna Maria V.
He, Chunyan
Chanock, Stephen J.
Garcia-Closas, Montserrat
Gierach, Gretchen L.
Figueroa, Jonine D.
author_facet Bodelon, Clara
Oh, Hannah
Derkach, Andriy
Sampson, Joshua N.
Sprague, Brian L.
Vacek, Pamela
Weaver, Donald L.
Fan, Shaoqi
Palakal, Maya
Papathomas, Daphne
Xiang, Jackie
Patel, Deesha A.
Linville, Laura
Clare, Susan E.
Visscher, Daniel W.
Mies, Carolyn
Hewitt, Stephen M.
Brinton, Louise A.
Storniolo, Anna Maria V.
He, Chunyan
Chanock, Stephen J.
Garcia-Closas, Montserrat
Gierach, Gretchen L.
Figueroa, Jonine D.
author_sort Bodelon, Clara
collection PubMed
description Terminal duct lobular units (TDLUs) are the predominant anatomical structures where breast cancers originate. Having lesser degrees of age-related TDLU involution, measured as higher TDLUs counts or more epithelial TDLU substructures (acini), is related to increased breast cancer risk among women with benign breast disease (BBD). We evaluated whether a recently developed polygenic risk score (PRS) based on 313-common variants for breast cancer prediction is related to TDLU involution in the background, normal breast tissue, as this could provide mechanistic clues on the genetic predisposition to breast cancer. Among 1398 women without breast cancer, higher values of the PRS were significantly associated with higher TDLU counts (P = 0.004), but not with acini counts (P = 0.808), in histologically normal tissue samples from donors and diagnostic BBD biopsies. Mediation analysis indicated that TDLU counts may explain a modest proportion (≤10%) of the association of the 313-variant PRS with breast cancer risk. These findings suggest that TDLU involution might be an intermediate step in the association between common genetic variation and breast cancer risk.
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spelling pubmed-74775552020-09-21 Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast Bodelon, Clara Oh, Hannah Derkach, Andriy Sampson, Joshua N. Sprague, Brian L. Vacek, Pamela Weaver, Donald L. Fan, Shaoqi Palakal, Maya Papathomas, Daphne Xiang, Jackie Patel, Deesha A. Linville, Laura Clare, Susan E. Visscher, Daniel W. Mies, Carolyn Hewitt, Stephen M. Brinton, Louise A. Storniolo, Anna Maria V. He, Chunyan Chanock, Stephen J. Garcia-Closas, Montserrat Gierach, Gretchen L. Figueroa, Jonine D. NPJ Breast Cancer Article Terminal duct lobular units (TDLUs) are the predominant anatomical structures where breast cancers originate. Having lesser degrees of age-related TDLU involution, measured as higher TDLUs counts or more epithelial TDLU substructures (acini), is related to increased breast cancer risk among women with benign breast disease (BBD). We evaluated whether a recently developed polygenic risk score (PRS) based on 313-common variants for breast cancer prediction is related to TDLU involution in the background, normal breast tissue, as this could provide mechanistic clues on the genetic predisposition to breast cancer. Among 1398 women without breast cancer, higher values of the PRS were significantly associated with higher TDLU counts (P = 0.004), but not with acini counts (P = 0.808), in histologically normal tissue samples from donors and diagnostic BBD biopsies. Mediation analysis indicated that TDLU counts may explain a modest proportion (≤10%) of the association of the 313-variant PRS with breast cancer risk. These findings suggest that TDLU involution might be an intermediate step in the association between common genetic variation and breast cancer risk. Nature Publishing Group UK 2020-09-07 /pmc/articles/PMC7477555/ /pubmed/32964115 http://dx.doi.org/10.1038/s41523-020-00184-7 Text en © This is a U.S. government work and not under copyright protection in the U.S.; foreign copyright protection may apply 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Bodelon, Clara
Oh, Hannah
Derkach, Andriy
Sampson, Joshua N.
Sprague, Brian L.
Vacek, Pamela
Weaver, Donald L.
Fan, Shaoqi
Palakal, Maya
Papathomas, Daphne
Xiang, Jackie
Patel, Deesha A.
Linville, Laura
Clare, Susan E.
Visscher, Daniel W.
Mies, Carolyn
Hewitt, Stephen M.
Brinton, Louise A.
Storniolo, Anna Maria V.
He, Chunyan
Chanock, Stephen J.
Garcia-Closas, Montserrat
Gierach, Gretchen L.
Figueroa, Jonine D.
Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title_full Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title_fullStr Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title_full_unstemmed Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title_short Polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
title_sort polygenic risk score for the prediction of breast cancer is related to lesser terminal duct lobular unit involution of the breast
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7477555/
https://www.ncbi.nlm.nih.gov/pubmed/32964115
http://dx.doi.org/10.1038/s41523-020-00184-7
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