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YbiB: a novel interactor of the GTPase ObgE

Obg is a widely conserved and essential GTPase in bacteria, which plays a central role in a large range of important cellular processes, such as ribosome biogenesis, DNA replication, cell division and bacterial persistence. Nevertheless, the exact function of Obg in these processes and the interacti...

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Autores principales: Deckers, Babette, Vercauteren, Silke, De Kock, Veerke, Martin, Charlotte, Lazar, Tamas, Herpels, Pauline, Dewachter, Liselot, Verstraeten, Natalie, Peeters, Eveline, Ballet, Steven, Michiels, Jan, Galicia, Christian, Versées, Wim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10123104/
https://www.ncbi.nlm.nih.gov/pubmed/36864742
http://dx.doi.org/10.1093/nar/gkad127
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author Deckers, Babette
Vercauteren, Silke
De Kock, Veerke
Martin, Charlotte
Lazar, Tamas
Herpels, Pauline
Dewachter, Liselot
Verstraeten, Natalie
Peeters, Eveline
Ballet, Steven
Michiels, Jan
Galicia, Christian
Versées, Wim
author_facet Deckers, Babette
Vercauteren, Silke
De Kock, Veerke
Martin, Charlotte
Lazar, Tamas
Herpels, Pauline
Dewachter, Liselot
Verstraeten, Natalie
Peeters, Eveline
Ballet, Steven
Michiels, Jan
Galicia, Christian
Versées, Wim
author_sort Deckers, Babette
collection PubMed
description Obg is a widely conserved and essential GTPase in bacteria, which plays a central role in a large range of important cellular processes, such as ribosome biogenesis, DNA replication, cell division and bacterial persistence. Nevertheless, the exact function of Obg in these processes and the interactions it makes within the associated pathways remain largely unknown. Here, we identify the DNA-binding TrpD2 protein YbiB as an interactor of the Escherichia coli Obg (ObgE). We show that both proteins interact with high affinity in a peculiar biphasic fashion, and pinpoint the intrinsically disordered and highly negatively charged C-terminal domain of ObgE as a main driver for this interaction. Molecular docking and X-ray crystallography, together with site-directed mutagenesis, are used to map the binding site of this ObgE C-terminal domain within a highly positively charged groove on the surface of the YbiB homodimer. Correspondingly, ObgE efficiently inhibits the binding of DNA to YbiB, indicating that ObgE competes with DNA for binding in the positive clefts of YbiB. This study thus forms an important step for the further elucidation of the interactome and cellular role of the essential bacterial protein Obg.
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spelling pubmed-101231042023-04-25 YbiB: a novel interactor of the GTPase ObgE Deckers, Babette Vercauteren, Silke De Kock, Veerke Martin, Charlotte Lazar, Tamas Herpels, Pauline Dewachter, Liselot Verstraeten, Natalie Peeters, Eveline Ballet, Steven Michiels, Jan Galicia, Christian Versées, Wim Nucleic Acids Res Structural Biology Obg is a widely conserved and essential GTPase in bacteria, which plays a central role in a large range of important cellular processes, such as ribosome biogenesis, DNA replication, cell division and bacterial persistence. Nevertheless, the exact function of Obg in these processes and the interactions it makes within the associated pathways remain largely unknown. Here, we identify the DNA-binding TrpD2 protein YbiB as an interactor of the Escherichia coli Obg (ObgE). We show that both proteins interact with high affinity in a peculiar biphasic fashion, and pinpoint the intrinsically disordered and highly negatively charged C-terminal domain of ObgE as a main driver for this interaction. Molecular docking and X-ray crystallography, together with site-directed mutagenesis, are used to map the binding site of this ObgE C-terminal domain within a highly positively charged groove on the surface of the YbiB homodimer. Correspondingly, ObgE efficiently inhibits the binding of DNA to YbiB, indicating that ObgE competes with DNA for binding in the positive clefts of YbiB. This study thus forms an important step for the further elucidation of the interactome and cellular role of the essential bacterial protein Obg. Oxford University Press 2023-03-02 /pmc/articles/PMC10123104/ /pubmed/36864742 http://dx.doi.org/10.1093/nar/gkad127 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Structural Biology
Deckers, Babette
Vercauteren, Silke
De Kock, Veerke
Martin, Charlotte
Lazar, Tamas
Herpels, Pauline
Dewachter, Liselot
Verstraeten, Natalie
Peeters, Eveline
Ballet, Steven
Michiels, Jan
Galicia, Christian
Versées, Wim
YbiB: a novel interactor of the GTPase ObgE
title YbiB: a novel interactor of the GTPase ObgE
title_full YbiB: a novel interactor of the GTPase ObgE
title_fullStr YbiB: a novel interactor of the GTPase ObgE
title_full_unstemmed YbiB: a novel interactor of the GTPase ObgE
title_short YbiB: a novel interactor of the GTPase ObgE
title_sort ybib: a novel interactor of the gtpase obge
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10123104/
https://www.ncbi.nlm.nih.gov/pubmed/36864742
http://dx.doi.org/10.1093/nar/gkad127
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