Cargando…
A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids
Chromosome and plasmid segregation in bacteria are mostly driven by ParABS systems. These DNA partitioning machineries rely on large nucleoprotein complexes assembled on centromere sites (parS). However, the mechanism of how a few parS‐bound ParB proteins nucleate the formation of highly concentrate...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6238139/ https://www.ncbi.nlm.nih.gov/pubmed/30446599 http://dx.doi.org/10.15252/msb.20188516 |
_version_ | 1783371315713933312 |
---|---|
author | Debaugny, Roxanne E Sanchez, Aurore Rech, Jérôme Labourdette, Delphine Dorignac, Jérôme Geniet, Frédéric Palmeri, John Parmeggiani, Andrea Boudsocq, François Anton Leberre, Véronique Walter, Jean‐Charles Bouet, Jean‐Yves |
author_facet | Debaugny, Roxanne E Sanchez, Aurore Rech, Jérôme Labourdette, Delphine Dorignac, Jérôme Geniet, Frédéric Palmeri, John Parmeggiani, Andrea Boudsocq, François Anton Leberre, Véronique Walter, Jean‐Charles Bouet, Jean‐Yves |
author_sort | Debaugny, Roxanne E |
collection | PubMed |
description | Chromosome and plasmid segregation in bacteria are mostly driven by ParABS systems. These DNA partitioning machineries rely on large nucleoprotein complexes assembled on centromere sites (parS). However, the mechanism of how a few parS‐bound ParB proteins nucleate the formation of highly concentrated ParB clusters remains unclear despite several proposed physico‐mathematical models. We discriminated between these different models by varying some key parameters in vivo using the F plasmid partition system. We found that “Nucleation & caging” is the only coherent model recapitulating in vivo data. We also showed that the stochastic self‐assembly of partition complexes (i) is a robust mechanism, (ii) does not directly involve ParA ATPase, (iii) results in a dynamic structure of discrete size independent of ParB concentration, and (iv) is not perturbed by active transcription but is by protein complexes. We refined the “Nucleation & caging” model and successfully applied it to the chromosomally encoded Par system of Vibrio cholerae, indicating that this stochastic self‐assembly mechanism is widely conserved from plasmids to chromosomes. |
format | Online Article Text |
id | pubmed-6238139 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-62381392018-11-21 A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids Debaugny, Roxanne E Sanchez, Aurore Rech, Jérôme Labourdette, Delphine Dorignac, Jérôme Geniet, Frédéric Palmeri, John Parmeggiani, Andrea Boudsocq, François Anton Leberre, Véronique Walter, Jean‐Charles Bouet, Jean‐Yves Mol Syst Biol Articles Chromosome and plasmid segregation in bacteria are mostly driven by ParABS systems. These DNA partitioning machineries rely on large nucleoprotein complexes assembled on centromere sites (parS). However, the mechanism of how a few parS‐bound ParB proteins nucleate the formation of highly concentrated ParB clusters remains unclear despite several proposed physico‐mathematical models. We discriminated between these different models by varying some key parameters in vivo using the F plasmid partition system. We found that “Nucleation & caging” is the only coherent model recapitulating in vivo data. We also showed that the stochastic self‐assembly of partition complexes (i) is a robust mechanism, (ii) does not directly involve ParA ATPase, (iii) results in a dynamic structure of discrete size independent of ParB concentration, and (iv) is not perturbed by active transcription but is by protein complexes. We refined the “Nucleation & caging” model and successfully applied it to the chromosomally encoded Par system of Vibrio cholerae, indicating that this stochastic self‐assembly mechanism is widely conserved from plasmids to chromosomes. John Wiley and Sons Inc. 2018-11-16 /pmc/articles/PMC6238139/ /pubmed/30446599 http://dx.doi.org/10.15252/msb.20188516 Text en © 2018 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Articles Debaugny, Roxanne E Sanchez, Aurore Rech, Jérôme Labourdette, Delphine Dorignac, Jérôme Geniet, Frédéric Palmeri, John Parmeggiani, Andrea Boudsocq, François Anton Leberre, Véronique Walter, Jean‐Charles Bouet, Jean‐Yves A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title | A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title_full | A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title_fullStr | A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title_full_unstemmed | A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title_short | A conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
title_sort | conserved mechanism drives partition complex assembly on bacterial chromosomes and plasmids |
topic | Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6238139/ https://www.ncbi.nlm.nih.gov/pubmed/30446599 http://dx.doi.org/10.15252/msb.20188516 |
work_keys_str_mv | AT debaugnyroxannee aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT sanchezaurore aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT rechjerome aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT labourdettedelphine aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT dorignacjerome aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT genietfrederic aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT palmerijohn aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT parmeggianiandrea aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT boudsocqfrancois aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT antonleberreveronique aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT walterjeancharles aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT bouetjeanyves aconservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT debaugnyroxannee conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT sanchezaurore conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT rechjerome conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT labourdettedelphine conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT dorignacjerome conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT genietfrederic conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT palmerijohn conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT parmeggianiandrea conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT boudsocqfrancois conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT antonleberreveronique conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT walterjeancharles conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids AT bouetjeanyves conservedmechanismdrivespartitioncomplexassemblyonbacterialchromosomesandplasmids |