Cargando…

Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies

BACKGROUND: The enzymes involved in de novo purine synthesis (DNPS), one of the basic processes in eukaryotic cells, transiently and reversibly form a dynamic multienzyme complex called the purinosome in the cytoplasm. The purinosome has been observed in a broad spectrum of cells, but some studies c...

Descripción completa

Detalles Bibliográficos
Autores principales: Baresova, Veronika, Skopova, Vaclava, Souckova, Olga, Krijt, Matyas, Kmoch, Stanislav, Zikanova, Marie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6066232/
https://www.ncbi.nlm.nih.gov/pubmed/30059557
http://dx.doi.org/10.1371/journal.pone.0201432
_version_ 1783342937499762688
author Baresova, Veronika
Skopova, Vaclava
Souckova, Olga
Krijt, Matyas
Kmoch, Stanislav
Zikanova, Marie
author_facet Baresova, Veronika
Skopova, Vaclava
Souckova, Olga
Krijt, Matyas
Kmoch, Stanislav
Zikanova, Marie
author_sort Baresova, Veronika
collection PubMed
description BACKGROUND: The enzymes involved in de novo purine synthesis (DNPS), one of the basic processes in eukaryotic cells, transiently and reversibly form a dynamic multienzyme complex called the purinosome in the cytoplasm. The purinosome has been observed in a broad spectrum of cells, but some studies claim that it is an artefact of the constructs used for visualization or stress granules resulting from the exposure of cells to nutrient-reduced growth media. Both may be true depending on the method of observation. To clarify this point, we combined two previously used methods, transfection and immunofluorescence, to detect purinosomes in purinosome-free cells deficient in particular DNPS steps (CR-DNPS cells) and in cells deficient in the salvage pathway, which resulted in construction of the purinosome regardless of purine level (CR-HGPRT cells). METHODS AND FINDINGS: To restore or disrupt purinosome formation, we transiently transfected CR-DNPS and CR-HGPRT cells with vectors encoding BFP-labelled wild-type (wt) proteins and observed the normalization of purinosome formation. The cells also ceased to accumulate the substrate(s) of the defective enzyme. The CR-DNPS cell line transfected with a DNA plasmid encoding an enzyme with zero activity served as a negative control for purinosome formation. No purinosome formation was observed in these cells regardless of the purine level in the growth medium. CONCLUSION: In conclusion, both methods are useful for the detection of purinosomes in HeLa cells. Moreover, the cell-based models prepared represent a unique system for the study of purinosome assembly with deficiencies in DNPS or in the salvage pathway as well as for the study of purinosome formation under the action of DNPS inhibitors. This approach is a promising step toward the treatment of purine disorders and can also provide targets for anticancer therapy.
format Online
Article
Text
id pubmed-6066232
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-60662322018-08-10 Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies Baresova, Veronika Skopova, Vaclava Souckova, Olga Krijt, Matyas Kmoch, Stanislav Zikanova, Marie PLoS One Research Article BACKGROUND: The enzymes involved in de novo purine synthesis (DNPS), one of the basic processes in eukaryotic cells, transiently and reversibly form a dynamic multienzyme complex called the purinosome in the cytoplasm. The purinosome has been observed in a broad spectrum of cells, but some studies claim that it is an artefact of the constructs used for visualization or stress granules resulting from the exposure of cells to nutrient-reduced growth media. Both may be true depending on the method of observation. To clarify this point, we combined two previously used methods, transfection and immunofluorescence, to detect purinosomes in purinosome-free cells deficient in particular DNPS steps (CR-DNPS cells) and in cells deficient in the salvage pathway, which resulted in construction of the purinosome regardless of purine level (CR-HGPRT cells). METHODS AND FINDINGS: To restore or disrupt purinosome formation, we transiently transfected CR-DNPS and CR-HGPRT cells with vectors encoding BFP-labelled wild-type (wt) proteins and observed the normalization of purinosome formation. The cells also ceased to accumulate the substrate(s) of the defective enzyme. The CR-DNPS cell line transfected with a DNA plasmid encoding an enzyme with zero activity served as a negative control for purinosome formation. No purinosome formation was observed in these cells regardless of the purine level in the growth medium. CONCLUSION: In conclusion, both methods are useful for the detection of purinosomes in HeLa cells. Moreover, the cell-based models prepared represent a unique system for the study of purinosome assembly with deficiencies in DNPS or in the salvage pathway as well as for the study of purinosome formation under the action of DNPS inhibitors. This approach is a promising step toward the treatment of purine disorders and can also provide targets for anticancer therapy. Public Library of Science 2018-07-30 /pmc/articles/PMC6066232/ /pubmed/30059557 http://dx.doi.org/10.1371/journal.pone.0201432 Text en © 2018 Baresova 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 (http://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
Baresova, Veronika
Skopova, Vaclava
Souckova, Olga
Krijt, Matyas
Kmoch, Stanislav
Zikanova, Marie
Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title_full Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title_fullStr Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title_full_unstemmed Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title_short Study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
title_sort study of purinosome assembly in cell-based model systems with de novo purine synthesis and salvage pathway deficiencies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6066232/
https://www.ncbi.nlm.nih.gov/pubmed/30059557
http://dx.doi.org/10.1371/journal.pone.0201432
work_keys_str_mv AT baresovaveronika studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies
AT skopovavaclava studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies
AT souckovaolga studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies
AT krijtmatyas studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies
AT kmochstanislav studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies
AT zikanovamarie studyofpurinosomeassemblyincellbasedmodelsystemswithdenovopurinesynthesisandsalvagepathwaydeficiencies