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Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase

Successful bacterial circular chromosome segregation requires that any dimeric chromosomes, which arise by crossing over during homologous recombination, are converted to monomers. Resolution of dimers to monomers requires the action of the XerCD site-specific recombinase at dif in the chromosome re...

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Autores principales: Yates, James, Zhekov, Ivailo, Baker, Rachel, Eklund, Bjørn, Sherratt, David J, Arciszewska, Lidia K
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1413583/
https://www.ncbi.nlm.nih.gov/pubmed/16553881
http://dx.doi.org/10.1111/j.1365-2958.2005.05033.x
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author Yates, James
Zhekov, Ivailo
Baker, Rachel
Eklund, Bjørn
Sherratt, David J
Arciszewska, Lidia K
author_facet Yates, James
Zhekov, Ivailo
Baker, Rachel
Eklund, Bjørn
Sherratt, David J
Arciszewska, Lidia K
author_sort Yates, James
collection PubMed
description Successful bacterial circular chromosome segregation requires that any dimeric chromosomes, which arise by crossing over during homologous recombination, are converted to monomers. Resolution of dimers to monomers requires the action of the XerCD site-specific recombinase at dif in the chromosome replication terminus region. This reaction requires the DNA translocase, FtsK(C), which activates dimer resolution by catalysing an ATP hydrolysis-dependent switch in the catalytic state of the nucleoprotein recombination complex. We show that a 62-amino-acid fragment of FtsK(C) interacts directly with the XerD C-terminus in order to stimulate the cleavage by XerD of BSN, a dif-DNA suicide substrate containing a nick in the ‘bottom’ strand. The resulting recombinase–DNA covalent complex can undergo strand exchange with intact duplex dif in the absence of ATP. FtsK(C)-mediated stimulation of BSN cleavage by XerD requires synaptic complex formation. Mutational impairment of the XerD–FtsK(C) interaction leads to reduction in the in vitro stimulation of BSN cleavage by XerD and a concomitant deficiency in the resolution of chromosomal dimers at dif in vivo, although other XerD functions are not affected.
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spelling pubmed-14135832006-03-31 Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase Yates, James Zhekov, Ivailo Baker, Rachel Eklund, Bjørn Sherratt, David J Arciszewska, Lidia K Mol Microbiol Original Articles Successful bacterial circular chromosome segregation requires that any dimeric chromosomes, which arise by crossing over during homologous recombination, are converted to monomers. Resolution of dimers to monomers requires the action of the XerCD site-specific recombinase at dif in the chromosome replication terminus region. This reaction requires the DNA translocase, FtsK(C), which activates dimer resolution by catalysing an ATP hydrolysis-dependent switch in the catalytic state of the nucleoprotein recombination complex. We show that a 62-amino-acid fragment of FtsK(C) interacts directly with the XerD C-terminus in order to stimulate the cleavage by XerD of BSN, a dif-DNA suicide substrate containing a nick in the ‘bottom’ strand. The resulting recombinase–DNA covalent complex can undergo strand exchange with intact duplex dif in the absence of ATP. FtsK(C)-mediated stimulation of BSN cleavage by XerD requires synaptic complex formation. Mutational impairment of the XerD–FtsK(C) interaction leads to reduction in the in vitro stimulation of BSN cleavage by XerD and a concomitant deficiency in the resolution of chromosomal dimers at dif in vivo, although other XerD functions are not affected. Blackwell Publishing Ltd 2006-03 2006-01-25 /pmc/articles/PMC1413583/ /pubmed/16553881 http://dx.doi.org/10.1111/j.1365-2958.2005.05033.x Text en © 2006 The Authors. Journal compilation © 2006 Blackwell Publishing Ltd
spellingShingle Original Articles
Yates, James
Zhekov, Ivailo
Baker, Rachel
Eklund, Bjørn
Sherratt, David J
Arciszewska, Lidia K
Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title_full Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title_fullStr Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title_full_unstemmed Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title_short Dissection of a functional interaction between the DNA translocase, FtsK, and the XerD recombinase
title_sort dissection of a functional interaction between the dna translocase, ftsk, and the xerd recombinase
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1413583/
https://www.ncbi.nlm.nih.gov/pubmed/16553881
http://dx.doi.org/10.1111/j.1365-2958.2005.05033.x
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