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The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro

[Image: see text] FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in Escherichia coli. The ring is stabilized by a number of proteins among which the widely conserved ZapA protein. Using antibodies against ZapA, we found surprisingly that the cellular concentration of...

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Autores principales: Mohammadi, Tamimount, Ploeger, Ginette E. J., Verheul, Jolanda, Comvalius, Anouskha D., Martos, Ariadna, Alfonso, Carlos, van Marle, Jan, Rivas, Germán, den Blaauwen, Tanneke
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2009
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2778355/
https://www.ncbi.nlm.nih.gov/pubmed/19842714
http://dx.doi.org/10.1021/bi901461p
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author Mohammadi, Tamimount
Ploeger, Ginette E. J.
Verheul, Jolanda
Comvalius, Anouskha D.
Martos, Ariadna
Alfonso, Carlos
van Marle, Jan
Rivas, Germán
den Blaauwen, Tanneke
author_facet Mohammadi, Tamimount
Ploeger, Ginette E. J.
Verheul, Jolanda
Comvalius, Anouskha D.
Martos, Ariadna
Alfonso, Carlos
van Marle, Jan
Rivas, Germán
den Blaauwen, Tanneke
author_sort Mohammadi, Tamimount
collection PubMed
description [Image: see text] FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in Escherichia coli. The ring is stabilized by a number of proteins among which the widely conserved ZapA protein. Using antibodies against ZapA, we found surprisingly that the cellular concentration of ZapA is approximately equal to that of FtsZ. This raised the question of how the cell can prevent their interaction and thereby the premature stabilization of FtsZ protofilaments in nondividing cells. Therefore, we studied the FtsZ−ZapA interaction at the physiological pH of 7.5 instead of pH 6.5 (the optimal pH for FtsZ polymerization), under conditions that stimulate protofilament formation (5 mM MgCl(2)) and under conditions that stimulate and stabilize protofilaments (10 mM MgCl(2)). Using pelleting, light scattering, and GTPase assays, it was found that stabilization and bundling of FtsZ polymers by ZapA was inversely correlated to the GTPase activity of FtsZ. As GTP hydrolysis is the rate-limiting factor for depolymerization of FtsZ, we propose that ZapA will only enhance the cooperativity of polymer association during the transition from helical filament to mid cell ring and will not stabilize the short single protofilaments in the cytoplasm. All thus far published in vitro data on the interaction between FtsZ and ZapA have been obtained with His-ZapA. We found that in our case the presence of a His tag fused to ZapA prevented the protein to complement a ΔzapA strain in vivo and that it affected the interaction between FtsZ and ZapA in vitro.
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spelling pubmed-27783552009-11-17 The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro Mohammadi, Tamimount Ploeger, Ginette E. J. Verheul, Jolanda Comvalius, Anouskha D. Martos, Ariadna Alfonso, Carlos van Marle, Jan Rivas, Germán den Blaauwen, Tanneke Biochemistry [Image: see text] FtsZ polymerizes in a ring-like structure at mid cell to initiate cell division in Escherichia coli. The ring is stabilized by a number of proteins among which the widely conserved ZapA protein. Using antibodies against ZapA, we found surprisingly that the cellular concentration of ZapA is approximately equal to that of FtsZ. This raised the question of how the cell can prevent their interaction and thereby the premature stabilization of FtsZ protofilaments in nondividing cells. Therefore, we studied the FtsZ−ZapA interaction at the physiological pH of 7.5 instead of pH 6.5 (the optimal pH for FtsZ polymerization), under conditions that stimulate protofilament formation (5 mM MgCl(2)) and under conditions that stimulate and stabilize protofilaments (10 mM MgCl(2)). Using pelleting, light scattering, and GTPase assays, it was found that stabilization and bundling of FtsZ polymers by ZapA was inversely correlated to the GTPase activity of FtsZ. As GTP hydrolysis is the rate-limiting factor for depolymerization of FtsZ, we propose that ZapA will only enhance the cooperativity of polymer association during the transition from helical filament to mid cell ring and will not stabilize the short single protofilaments in the cytoplasm. All thus far published in vitro data on the interaction between FtsZ and ZapA have been obtained with His-ZapA. We found that in our case the presence of a His tag fused to ZapA prevented the protein to complement a ΔzapA strain in vivo and that it affected the interaction between FtsZ and ZapA in vitro. American Chemical Society 2009-10-20 2009-11-24 /pmc/articles/PMC2778355/ /pubmed/19842714 http://dx.doi.org/10.1021/bi901461p Text en Copyright © 2009 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Mohammadi, Tamimount
Ploeger, Ginette E. J.
Verheul, Jolanda
Comvalius, Anouskha D.
Martos, Ariadna
Alfonso, Carlos
van Marle, Jan
Rivas, Germán
den Blaauwen, Tanneke
The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title_full The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title_fullStr The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title_full_unstemmed The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title_short The GTPase Activity of Escherichia coli FtsZ Determines the Magnitude of the FtsZ Polymer Bundling by ZapA in Vitro
title_sort gtpase activity of escherichia coli ftsz determines the magnitude of the ftsz polymer bundling by zapa in vitro
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2778355/
https://www.ncbi.nlm.nih.gov/pubmed/19842714
http://dx.doi.org/10.1021/bi901461p
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