Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.

Mammalian Pol ι has an unusual combination of properties: it is stimulated by Mn(2+) ions, can bypass some DNA lesions and misincorporates "G" opposite template "T" more frequently than incorporates the correct "A." We recently proposed a method of detection of Pol ι ac...

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Main Authors: Alena V Makarova, Corinn Grabow, Leonid V Gening, Vyacheslav Z Tarantul, Tahir H Tahirov, Tadayoshi Bessho, Youri I Pavlov
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3031609?pdf=render
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spelling doaj-35c5a6e0f35544599cfae88fb25278b62020-11-24T22:00:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0161e1661210.1371/journal.pone.0016612Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.Alena V MakarovaCorinn GrabowLeonid V GeningVyacheslav Z TarantulTahir H TahirovTadayoshi BesshoYouri I PavlovMammalian Pol ι has an unusual combination of properties: it is stimulated by Mn(2+) ions, can bypass some DNA lesions and misincorporates "G" opposite template "T" more frequently than incorporates the correct "A." We recently proposed a method of detection of Pol ι activity in animal cell extracts, based on primer extension opposite the template T with a high concentration of only two nucleotides, dGTP and dATP (incorporation of "G" versus "A" method of Gening, abbreviated as "misGvA"). We provide unambiguous proof of the "misGvA" approach concept and extend the applicability of the method for the studies of variants of Pol ι in the yeast model system with different cation cofactors. We produced human Pol ι in baker's yeast, which do not have a POLI ortholog. The "misGvA" activity is absent in cell extracts containing an empty vector, or producing catalytically dead Pol ι, or Pol ι lacking exon 2, but is robust in the strain producing wild-type Pol ι or its catalytic core, or protein with the active center L62I mutant. The signature pattern of primer extension products resulting from inaccurate DNA synthesis by extracts of cells producing either Pol ι or human Pol η is different. The DNA sequence of the template is critical for the detection of the infidelity of DNA synthesis attributed to DNA Pol ι. The primer/template and composition of the exogenous DNA precursor pool can be adapted to monitor replication fidelity in cell extracts expressing various error-prone Pols or mutator variants of accurate Pols. Finally, we demonstrate that the mutation rates in yeast strains producing human DNA Pols ι and η are not elevated over the control strain, despite highly inaccurate DNA synthesis by their extracts.http://europepmc.org/articles/PMC3031609?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Alena V Makarova
Corinn Grabow
Leonid V Gening
Vyacheslav Z Tarantul
Tahir H Tahirov
Tadayoshi Bessho
Youri I Pavlov
spellingShingle Alena V Makarova
Corinn Grabow
Leonid V Gening
Vyacheslav Z Tarantul
Tahir H Tahirov
Tadayoshi Bessho
Youri I Pavlov
Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
PLoS ONE
author_facet Alena V Makarova
Corinn Grabow
Leonid V Gening
Vyacheslav Z Tarantul
Tahir H Tahirov
Tadayoshi Bessho
Youri I Pavlov
author_sort Alena V Makarova
title Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
title_short Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
title_full Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
title_fullStr Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
title_full_unstemmed Inaccurate DNA synthesis in cell extracts of yeast producing active human DNA polymerase iota.
title_sort inaccurate dna synthesis in cell extracts of yeast producing active human dna polymerase iota.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Mammalian Pol ι has an unusual combination of properties: it is stimulated by Mn(2+) ions, can bypass some DNA lesions and misincorporates "G" opposite template "T" more frequently than incorporates the correct "A." We recently proposed a method of detection of Pol ι activity in animal cell extracts, based on primer extension opposite the template T with a high concentration of only two nucleotides, dGTP and dATP (incorporation of "G" versus "A" method of Gening, abbreviated as "misGvA"). We provide unambiguous proof of the "misGvA" approach concept and extend the applicability of the method for the studies of variants of Pol ι in the yeast model system with different cation cofactors. We produced human Pol ι in baker's yeast, which do not have a POLI ortholog. The "misGvA" activity is absent in cell extracts containing an empty vector, or producing catalytically dead Pol ι, or Pol ι lacking exon 2, but is robust in the strain producing wild-type Pol ι or its catalytic core, or protein with the active center L62I mutant. The signature pattern of primer extension products resulting from inaccurate DNA synthesis by extracts of cells producing either Pol ι or human Pol η is different. The DNA sequence of the template is critical for the detection of the infidelity of DNA synthesis attributed to DNA Pol ι. The primer/template and composition of the exogenous DNA precursor pool can be adapted to monitor replication fidelity in cell extracts expressing various error-prone Pols or mutator variants of accurate Pols. Finally, we demonstrate that the mutation rates in yeast strains producing human DNA Pols ι and η are not elevated over the control strain, despite highly inaccurate DNA synthesis by their extracts.
url http://europepmc.org/articles/PMC3031609?pdf=render
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