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CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism

Glutamine analogs are potent suppressors of general glutamine metabolism with anti-cancer activity. 6-diazo-5-oxo-L-norleucine (DON) is an orally available glutamine analog which has been recently improved by structural modification for cancer treatment. Here, we explored the chemogenomic landscape...

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Autores principales: Ajazi, Arta, Choudhary, Ramveer, Tronci, Laura, Bachi, Angela, Bruhn, Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8923462/
https://www.ncbi.nlm.nih.gov/pubmed/35239666
http://dx.doi.org/10.1371/journal.pgen.1010101
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author Ajazi, Arta
Choudhary, Ramveer
Tronci, Laura
Bachi, Angela
Bruhn, Christopher
author_facet Ajazi, Arta
Choudhary, Ramveer
Tronci, Laura
Bachi, Angela
Bruhn, Christopher
author_sort Ajazi, Arta
collection PubMed
description Glutamine analogs are potent suppressors of general glutamine metabolism with anti-cancer activity. 6-diazo-5-oxo-L-norleucine (DON) is an orally available glutamine analog which has been recently improved by structural modification for cancer treatment. Here, we explored the chemogenomic landscape of DON sensitivity using budding yeast as model organism. We identify evolutionarily conserved proteins that mediate cell resistance to glutamine analogs, namely Ura8(CTPS1/2), Hpt1(HPRT1), Mec1(ATR), Rad53(CHK1/CHK2) and Rtg1. We describe a function of Ura8 as inducible CTP synthase responding to inhibition of glutamine metabolism and propose a model for its regulation by CTP levels and Nrd1-dependent transcription termination at a cryptic unstable transcript. Disruption of the inducible CTP synthase under DON exposure hyper-activates the Mec1-Rad53 DNA damage response (DDR) pathway, which prevents chromosome breakage. Simultaneous inhibition of CTP synthase and Mec1 kinase synergistically sensitizes cells to DON, whereas CTP synthase over-expression hampers DDR mutant sensitivity. Using genome-wide suppressor screening, we identify factors promoting DON-induced CTP depletion (TORC1, glutamine transporter) and DNA breakage in DDR mutants. Together, our results identify CTP regulation and the Mec1-Rad53 DDR axis as key glutamine analog response pathways, and provide a rationale for the combined targeting of glutamine and CTP metabolism in DDR-deficient cancers.
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spelling pubmed-89234622022-03-16 CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism Ajazi, Arta Choudhary, Ramveer Tronci, Laura Bachi, Angela Bruhn, Christopher PLoS Genet Research Article Glutamine analogs are potent suppressors of general glutamine metabolism with anti-cancer activity. 6-diazo-5-oxo-L-norleucine (DON) is an orally available glutamine analog which has been recently improved by structural modification for cancer treatment. Here, we explored the chemogenomic landscape of DON sensitivity using budding yeast as model organism. We identify evolutionarily conserved proteins that mediate cell resistance to glutamine analogs, namely Ura8(CTPS1/2), Hpt1(HPRT1), Mec1(ATR), Rad53(CHK1/CHK2) and Rtg1. We describe a function of Ura8 as inducible CTP synthase responding to inhibition of glutamine metabolism and propose a model for its regulation by CTP levels and Nrd1-dependent transcription termination at a cryptic unstable transcript. Disruption of the inducible CTP synthase under DON exposure hyper-activates the Mec1-Rad53 DNA damage response (DDR) pathway, which prevents chromosome breakage. Simultaneous inhibition of CTP synthase and Mec1 kinase synergistically sensitizes cells to DON, whereas CTP synthase over-expression hampers DDR mutant sensitivity. Using genome-wide suppressor screening, we identify factors promoting DON-induced CTP depletion (TORC1, glutamine transporter) and DNA breakage in DDR mutants. Together, our results identify CTP regulation and the Mec1-Rad53 DDR axis as key glutamine analog response pathways, and provide a rationale for the combined targeting of glutamine and CTP metabolism in DDR-deficient cancers. Public Library of Science 2022-03-03 /pmc/articles/PMC8923462/ /pubmed/35239666 http://dx.doi.org/10.1371/journal.pgen.1010101 Text en © 2022 Ajazi et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ajazi, Arta
Choudhary, Ramveer
Tronci, Laura
Bachi, Angela
Bruhn, Christopher
CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title_full CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title_fullStr CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title_full_unstemmed CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title_short CTP sensing and Mec1(ATR)-Rad53(CHK1/CHK2) mediate a two-layered response to inhibition of glutamine metabolism
title_sort ctp sensing and mec1(atr)-rad53(chk1/chk2) mediate a two-layered response to inhibition of glutamine metabolism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8923462/
https://www.ncbi.nlm.nih.gov/pubmed/35239666
http://dx.doi.org/10.1371/journal.pgen.1010101
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