Cargando…

The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers

The Mini-chromosome maintenance (Mcm) proteins are essential as central components for the DNA unwinding machinery during eukaryotic DNA replication. DNA primase activity is required at the DNA replication fork to synthesize short RNA primers for DNA chain elongation on the lagging strand. Although...

Descripción completa

Detalles Bibliográficos
Autores principales: You, Zhiying, De Falco, Mariarosaria, Kamada, Katsuhiko, Pisani, Francesca M., Masai, Hisao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3748026/
https://www.ncbi.nlm.nih.gov/pubmed/23977294
http://dx.doi.org/10.1371/journal.pone.0072408
_version_ 1782281019282423808
author You, Zhiying
De Falco, Mariarosaria
Kamada, Katsuhiko
Pisani, Francesca M.
Masai, Hisao
author_facet You, Zhiying
De Falco, Mariarosaria
Kamada, Katsuhiko
Pisani, Francesca M.
Masai, Hisao
author_sort You, Zhiying
collection PubMed
description The Mini-chromosome maintenance (Mcm) proteins are essential as central components for the DNA unwinding machinery during eukaryotic DNA replication. DNA primase activity is required at the DNA replication fork to synthesize short RNA primers for DNA chain elongation on the lagging strand. Although direct physical and functional interactions between helicase and primase have been known in many prokaryotic and viral systems, potential interactions between helicase and primase have not been explored in eukaryotes. Using purified Mcm and DNA primase complexes, a direct physical interaction is detected in pull-down assays between the Mcm2∼7 complex and the hetero-dimeric DNA primase composed of the p48 and p58 subunits. The Mcm4/6/7 complex co-sediments with the primase and the DNA polymerase α-primase complex in glycerol gradient centrifugation and forms a Mcm4/6/7-primase-DNA ternary complex in gel-shift assays. Both the Mcm4/6/7 and Mcm2∼7 complexes stimulate RNA primer synthesis by DNA primase in vitro. However, primase inhibits the Mcm4/6/7 helicase activity and this inhibition is abolished by the addition of competitor DNA. In contrast, the ATP hydrolysis activity of Mcm4/6/7 complex is not affected by primase. Mcm and primase proteins mutually stimulate their DNA-binding activities. Our findings indicate that a direct physical interaction between primase and Mcm proteins may facilitate priming reaction by the former protein, suggesting that efficient DNA synthesis through helicase-primase interactions may be conserved in eukaryotic chromosomes.
format Online
Article
Text
id pubmed-3748026
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37480262013-08-23 The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers You, Zhiying De Falco, Mariarosaria Kamada, Katsuhiko Pisani, Francesca M. Masai, Hisao PLoS One Research Article The Mini-chromosome maintenance (Mcm) proteins are essential as central components for the DNA unwinding machinery during eukaryotic DNA replication. DNA primase activity is required at the DNA replication fork to synthesize short RNA primers for DNA chain elongation on the lagging strand. Although direct physical and functional interactions between helicase and primase have been known in many prokaryotic and viral systems, potential interactions between helicase and primase have not been explored in eukaryotes. Using purified Mcm and DNA primase complexes, a direct physical interaction is detected in pull-down assays between the Mcm2∼7 complex and the hetero-dimeric DNA primase composed of the p48 and p58 subunits. The Mcm4/6/7 complex co-sediments with the primase and the DNA polymerase α-primase complex in glycerol gradient centrifugation and forms a Mcm4/6/7-primase-DNA ternary complex in gel-shift assays. Both the Mcm4/6/7 and Mcm2∼7 complexes stimulate RNA primer synthesis by DNA primase in vitro. However, primase inhibits the Mcm4/6/7 helicase activity and this inhibition is abolished by the addition of competitor DNA. In contrast, the ATP hydrolysis activity of Mcm4/6/7 complex is not affected by primase. Mcm and primase proteins mutually stimulate their DNA-binding activities. Our findings indicate that a direct physical interaction between primase and Mcm proteins may facilitate priming reaction by the former protein, suggesting that efficient DNA synthesis through helicase-primase interactions may be conserved in eukaryotic chromosomes. Public Library of Science 2013-08-20 /pmc/articles/PMC3748026/ /pubmed/23977294 http://dx.doi.org/10.1371/journal.pone.0072408 Text en © 2013 You 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
You, Zhiying
De Falco, Mariarosaria
Kamada, Katsuhiko
Pisani, Francesca M.
Masai, Hisao
The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title_full The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title_fullStr The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title_full_unstemmed The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title_short The Mini-Chromosome Maintenance (Mcm) Complexes Interact with DNA Polymerase α-Primase and Stimulate Its Ability to Synthesize RNA Primers
title_sort mini-chromosome maintenance (mcm) complexes interact with dna polymerase α-primase and stimulate its ability to synthesize rna primers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3748026/
https://www.ncbi.nlm.nih.gov/pubmed/23977294
http://dx.doi.org/10.1371/journal.pone.0072408
work_keys_str_mv AT youzhiying theminichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT defalcomariarosaria theminichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT kamadakatsuhiko theminichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT pisanifrancescam theminichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT masaihisao theminichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT youzhiying minichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT defalcomariarosaria minichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT kamadakatsuhiko minichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT pisanifrancescam minichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers
AT masaihisao minichromosomemaintenancemcmcomplexesinteractwithdnapolymeraseaprimaseandstimulateitsabilitytosynthesizernaprimers