A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites
The unfolded protein response (UPR) is a stress response pathway implicated in numerous diseases and chemotherapy resistance. Here, the authors define the UPR regulon with a multi-omics strategy, uncovering changes to mitochondrial one-carbon metabolism and concomitant resistance to folate-based the...
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Nature Portfolio
2020
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oai:doaj.org-article:79d8f5e4871145f68820d3fe6d2159852021-12-02T14:58:24ZA multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites10.1038/s41467-020-16747-y2041-1723https://doaj.org/article/79d8f5e4871145f68820d3fe6d2159852020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16747-yhttps://doaj.org/toc/2041-1723The unfolded protein response (UPR) is a stress response pathway implicated in numerous diseases and chemotherapy resistance. Here, the authors define the UPR regulon with a multi-omics strategy, uncovering changes to mitochondrial one-carbon metabolism and concomitant resistance to folate-based therapeutics.Stefan ReichChi D. L. NguyenCanan HasSascha SteltgensHimanshu SoniCristina ComanMoritz FreybergAnna BichlerNicole SeifertDominik ConradChristiane B. Knobbe-ThomsenBjörn TewsGrischa ToedtRobert AhrendsJan MedenbachNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020) |
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Science Q |
spellingShingle |
Science Q Stefan Reich Chi D. L. Nguyen Canan Has Sascha Steltgens Himanshu Soni Cristina Coman Moritz Freyberg Anna Bichler Nicole Seifert Dominik Conrad Christiane B. Knobbe-Thomsen Björn Tews Grischa Toedt Robert Ahrends Jan Medenbach A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
description |
The unfolded protein response (UPR) is a stress response pathway implicated in numerous diseases and chemotherapy resistance. Here, the authors define the UPR regulon with a multi-omics strategy, uncovering changes to mitochondrial one-carbon metabolism and concomitant resistance to folate-based therapeutics. |
format |
article |
author |
Stefan Reich Chi D. L. Nguyen Canan Has Sascha Steltgens Himanshu Soni Cristina Coman Moritz Freyberg Anna Bichler Nicole Seifert Dominik Conrad Christiane B. Knobbe-Thomsen Björn Tews Grischa Toedt Robert Ahrends Jan Medenbach |
author_facet |
Stefan Reich Chi D. L. Nguyen Canan Has Sascha Steltgens Himanshu Soni Cristina Coman Moritz Freyberg Anna Bichler Nicole Seifert Dominik Conrad Christiane B. Knobbe-Thomsen Björn Tews Grischa Toedt Robert Ahrends Jan Medenbach |
author_sort |
Stefan Reich |
title |
A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
title_short |
A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
title_full |
A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
title_fullStr |
A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
title_full_unstemmed |
A multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
title_sort |
multi-omics analysis reveals the unfolded protein response regulon and stress-induced resistance to folate-based antimetabolites |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/79d8f5e4871145f68820d3fe6d215985 |
work_keys_str_mv |
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