Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation

Pyruvate kinase phosphorylates histone H3T11 (H3pT11) and represses gene expression by forming a large complex SESAME (Serine-responsive SAM-containing Metabolic Enzyme). Here the authors show that SESAME-catalyzed H3pT11 regulates telomere silencing by promoting Sir2 binding at telomeres and preven...

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Autores principales: Shihao Zhang, Xilan Yu, Yuan Zhang, Xiangyan Xue, Qi Yu, Zitong Zha, Madelaine Gogol, Jerry L. Workman, Shanshan Li
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/9e1bd0d0532546299ffe3623112e7b14
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spelling oai:doaj.org-article:9e1bd0d0532546299ffe3623112e7b142021-12-02T13:24:04ZMetabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation10.1038/s41467-020-20711-12041-1723https://doaj.org/article/9e1bd0d0532546299ffe3623112e7b142021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20711-1https://doaj.org/toc/2041-1723Pyruvate kinase phosphorylates histone H3T11 (H3pT11) and represses gene expression by forming a large complex SESAME (Serine-responsive SAM-containing Metabolic Enzyme). Here the authors show that SESAME-catalyzed H3pT11 regulates telomere silencing by promoting Sir2 binding at telomeres and preventing autophagy-mediated Sir2 degradation.Shihao ZhangXilan YuYuan ZhangXiangyan XueQi YuZitong ZhaMadelaine GogolJerry L. WorkmanShanshan LiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-15 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shihao Zhang
Xilan Yu
Yuan Zhang
Xiangyan Xue
Qi Yu
Zitong Zha
Madelaine Gogol
Jerry L. Workman
Shanshan Li
Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
description Pyruvate kinase phosphorylates histone H3T11 (H3pT11) and represses gene expression by forming a large complex SESAME (Serine-responsive SAM-containing Metabolic Enzyme). Here the authors show that SESAME-catalyzed H3pT11 regulates telomere silencing by promoting Sir2 binding at telomeres and preventing autophagy-mediated Sir2 degradation.
format article
author Shihao Zhang
Xilan Yu
Yuan Zhang
Xiangyan Xue
Qi Yu
Zitong Zha
Madelaine Gogol
Jerry L. Workman
Shanshan Li
author_facet Shihao Zhang
Xilan Yu
Yuan Zhang
Xiangyan Xue
Qi Yu
Zitong Zha
Madelaine Gogol
Jerry L. Workman
Shanshan Li
author_sort Shihao Zhang
title Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
title_short Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
title_full Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
title_fullStr Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
title_full_unstemmed Metabolic regulation of telomere silencing by SESAME complex-catalyzed H3T11 phosphorylation
title_sort metabolic regulation of telomere silencing by sesame complex-catalyzed h3t11 phosphorylation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/9e1bd0d0532546299ffe3623112e7b14
work_keys_str_mv AT shihaozhang metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT xilanyu metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT yuanzhang metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT xiangyanxue metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT qiyu metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT zitongzha metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT madelainegogol metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT jerrylworkman metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
AT shanshanli metabolicregulationoftelomeresilencingbysesamecomplexcatalyzedh3t11phosphorylation
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