Cargando…

A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions

Genome instability is a hallmark of cancer cells. One class of genome aberrations prevalent in tumor cells is termed gross chromosomal rearrangements (GCRs). GCRs comprise chromosome translocations, amplifications, inversions, deletion of whole chromosome arms, and interstitial deletions. Here, we r...

Descripción completa

Detalles Bibliográficos
Autores principales: Kanellis, Pamela, Gagliardi, Mark, Banath, Judit P, Szilard, Rachel K, Nakada, Shinichiro, Galicia, Sarah, Sweeney, Frederic D, Cabelof, Diane C, Olive, Peggy L, Durocher, Daniel
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1941753/
https://www.ncbi.nlm.nih.gov/pubmed/17696614
http://dx.doi.org/10.1371/journal.pgen.0030134
_version_ 1782134470328975360
author Kanellis, Pamela
Gagliardi, Mark
Banath, Judit P
Szilard, Rachel K
Nakada, Shinichiro
Galicia, Sarah
Sweeney, Frederic D
Cabelof, Diane C
Olive, Peggy L
Durocher, Daniel
author_facet Kanellis, Pamela
Gagliardi, Mark
Banath, Judit P
Szilard, Rachel K
Nakada, Shinichiro
Galicia, Sarah
Sweeney, Frederic D
Cabelof, Diane C
Olive, Peggy L
Durocher, Daniel
author_sort Kanellis, Pamela
collection PubMed
description Genome instability is a hallmark of cancer cells. One class of genome aberrations prevalent in tumor cells is termed gross chromosomal rearrangements (GCRs). GCRs comprise chromosome translocations, amplifications, inversions, deletion of whole chromosome arms, and interstitial deletions. Here, we report the results of a genome-wide screen in Saccharomyces cerevisiae aimed at identifying novel suppressors of GCR formation. The most potent novel GCR suppressor identified is BUD16, the gene coding for yeast pyridoxal kinase (Pdxk), a key enzyme in the metabolism of pyridoxal 5′ phosphate (PLP), the biologically active form of vitamin B6. We show that Pdxk potently suppresses GCR events by curtailing the appearance of DNA lesions during the cell cycle. We also show that pharmacological inhibition of Pdxk in human cells leads to the production of DSBs and activation of the DNA damage checkpoint. Finally, our evidence suggests that PLP deficiency threatens genome integrity, most likely via its role in dTMP biosynthesis, as Pdxk-deficient cells accumulate uracil in their nuclear DNA and are sensitive to inhibition of ribonucleotide reductase. Since Pdxk links diet to genome stability, our work supports the hypothesis that dietary micronutrients reduce cancer risk by curtailing the accumulation of DNA damage and suggests that micronutrient depletion could be part of a defense mechanism against hyperproliferation.
format Text
id pubmed-1941753
institution National Center for Biotechnology Information
language English
publishDate 2007
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-19417532007-08-10 A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions Kanellis, Pamela Gagliardi, Mark Banath, Judit P Szilard, Rachel K Nakada, Shinichiro Galicia, Sarah Sweeney, Frederic D Cabelof, Diane C Olive, Peggy L Durocher, Daniel PLoS Genet Research Article Genome instability is a hallmark of cancer cells. One class of genome aberrations prevalent in tumor cells is termed gross chromosomal rearrangements (GCRs). GCRs comprise chromosome translocations, amplifications, inversions, deletion of whole chromosome arms, and interstitial deletions. Here, we report the results of a genome-wide screen in Saccharomyces cerevisiae aimed at identifying novel suppressors of GCR formation. The most potent novel GCR suppressor identified is BUD16, the gene coding for yeast pyridoxal kinase (Pdxk), a key enzyme in the metabolism of pyridoxal 5′ phosphate (PLP), the biologically active form of vitamin B6. We show that Pdxk potently suppresses GCR events by curtailing the appearance of DNA lesions during the cell cycle. We also show that pharmacological inhibition of Pdxk in human cells leads to the production of DSBs and activation of the DNA damage checkpoint. Finally, our evidence suggests that PLP deficiency threatens genome integrity, most likely via its role in dTMP biosynthesis, as Pdxk-deficient cells accumulate uracil in their nuclear DNA and are sensitive to inhibition of ribonucleotide reductase. Since Pdxk links diet to genome stability, our work supports the hypothesis that dietary micronutrients reduce cancer risk by curtailing the accumulation of DNA damage and suggests that micronutrient depletion could be part of a defense mechanism against hyperproliferation. Public Library of Science 2007-08 2007-08-10 /pmc/articles/PMC1941753/ /pubmed/17696614 http://dx.doi.org/10.1371/journal.pgen.0030134 Text en © 2007 Kanellis et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kanellis, Pamela
Gagliardi, Mark
Banath, Judit P
Szilard, Rachel K
Nakada, Shinichiro
Galicia, Sarah
Sweeney, Frederic D
Cabelof, Diane C
Olive, Peggy L
Durocher, Daniel
A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title_full A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title_fullStr A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title_full_unstemmed A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title_short A Screen for Suppressors of Gross Chromosomal Rearrangements Identifies a Conserved Role for PLP in Preventing DNA Lesions
title_sort screen for suppressors of gross chromosomal rearrangements identifies a conserved role for plp in preventing dna lesions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1941753/
https://www.ncbi.nlm.nih.gov/pubmed/17696614
http://dx.doi.org/10.1371/journal.pgen.0030134
work_keys_str_mv AT kanellispamela ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT gagliardimark ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT banathjuditp ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT szilardrachelk ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT nakadashinichiro ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT galiciasarah ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT sweeneyfredericd ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT cabelofdianec ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT olivepeggyl ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT durocherdaniel ascreenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT kanellispamela screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT gagliardimark screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT banathjuditp screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT szilardrachelk screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT nakadashinichiro screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT galiciasarah screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT sweeneyfredericd screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT cabelofdianec screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT olivepeggyl screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions
AT durocherdaniel screenforsuppressorsofgrosschromosomalrearrangementsidentifiesaconservedroleforplpinpreventingdnalesions