The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing
The relationship between DNA damage response (DDR) and regulation of the tolerance to glucose restriction is currently unclear. Here the authors reveal that maintaining a physiological level of histones by Rad53-Spt21 is necessary for glucose tolerance via multiple parallel pathways, including derep...
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Nature Portfolio
2020
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oai:doaj.org-article:c1334c64c88341dd9b8f7f4e9f1776942021-12-02T18:00:10ZThe Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing10.1038/s41467-020-17961-42041-1723https://doaj.org/article/c1334c64c88341dd9b8f7f4e9f1776942020-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17961-4https://doaj.org/toc/2041-1723The relationship between DNA damage response (DDR) and regulation of the tolerance to glucose restriction is currently unclear. Here the authors reveal that maintaining a physiological level of histones by Rad53-Spt21 is necessary for glucose tolerance via multiple parallel pathways, including derepression of subtelomeric genes and acetyl-coA regulation by histone acetylation.Christopher BruhnArta AjaziElisa FerrariMichael Charles LanzRenaud BatrinRamveer ChoudharyAdhish WalvekarSunil LaxmanMaria Pia LongheseEmmanuelle FabreMarcus Bustamente SmolkaMarco FoianiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-14 (2020) |
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Science Q Christopher Bruhn Arta Ajazi Elisa Ferrari Michael Charles Lanz Renaud Batrin Ramveer Choudhary Adhish Walvekar Sunil Laxman Maria Pia Longhese Emmanuelle Fabre Marcus Bustamente Smolka Marco Foiani The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
description |
The relationship between DNA damage response (DDR) and regulation of the tolerance to glucose restriction is currently unclear. Here the authors reveal that maintaining a physiological level of histones by Rad53-Spt21 is necessary for glucose tolerance via multiple parallel pathways, including derepression of subtelomeric genes and acetyl-coA regulation by histone acetylation. |
format |
article |
author |
Christopher Bruhn Arta Ajazi Elisa Ferrari Michael Charles Lanz Renaud Batrin Ramveer Choudhary Adhish Walvekar Sunil Laxman Maria Pia Longhese Emmanuelle Fabre Marcus Bustamente Smolka Marco Foiani |
author_facet |
Christopher Bruhn Arta Ajazi Elisa Ferrari Michael Charles Lanz Renaud Batrin Ramveer Choudhary Adhish Walvekar Sunil Laxman Maria Pia Longhese Emmanuelle Fabre Marcus Bustamente Smolka Marco Foiani |
author_sort |
Christopher Bruhn |
title |
The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
title_short |
The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
title_full |
The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
title_fullStr |
The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
title_full_unstemmed |
The Rad53CHK1/CHK2-Spt21NPAT and Tel1ATM axes couple glucose tolerance to histone dosage and subtelomeric silencing |
title_sort |
rad53chk1/chk2-spt21npat and tel1atm axes couple glucose tolerance to histone dosage and subtelomeric silencing |
publisher |
Nature Portfolio |
publishDate |
2020 |
url |
https://doaj.org/article/c1334c64c88341dd9b8f7f4e9f177694 |
work_keys_str_mv |
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