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GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE

Even though the Obg protein is essential for bacterial viability, the cellular functions of this universally conserved GTPase remain enigmatic. Moreover, the influence of GTP and GDP binding on the activity of this protein is largely unknown. Previously, we identified a mutant isoform of ObgE (the O...

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Autores principales: Dewachter, Liselot, Deckers, Babette, Martin, Ella, Herpels, Pauline, Gkekas, Sotirios, Versées, Wim, Verstraeten, Natalie, Fauvart, Maarten, Michiels, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982127/
https://www.ncbi.nlm.nih.gov/pubmed/31861427
http://dx.doi.org/10.3390/ijms21010016
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author Dewachter, Liselot
Deckers, Babette
Martin, Ella
Herpels, Pauline
Gkekas, Sotirios
Versées, Wim
Verstraeten, Natalie
Fauvart, Maarten
Michiels, Jan
author_facet Dewachter, Liselot
Deckers, Babette
Martin, Ella
Herpels, Pauline
Gkekas, Sotirios
Versées, Wim
Verstraeten, Natalie
Fauvart, Maarten
Michiels, Jan
author_sort Dewachter, Liselot
collection PubMed
description Even though the Obg protein is essential for bacterial viability, the cellular functions of this universally conserved GTPase remain enigmatic. Moreover, the influence of GTP and GDP binding on the activity of this protein is largely unknown. Previously, we identified a mutant isoform of ObgE (the Obg protein of Escherichia coli) that triggers cell death. In this research we explore the biochemical requirements for the toxic effect of this mutant ObgE* isoform, using cell death as a readily accessible read-out for protein activity. Both the absence of the N-terminal domain and a decreased GTP binding affinity neutralize ObgE*-mediated toxicity. Moreover, a deletion in the region that connects the N-terminal domain to the G domain likewise abolishes toxicity. Taken together, these data indicate that GTP binding by ObgE* triggers a conformational change that is transmitted to the N-terminal domain to confer toxicity. We therefore conclude that ObgE*–GTP, but not ObgE*–GDP, is the active form of ObgE* that is detrimental to cell viability. Based on these data, we speculate that also for wild-type ObgE, GTP binding triggers conformational changes that affect the N-terminal domain and thereby control ObgE function.
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spelling pubmed-69821272020-02-07 GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE Dewachter, Liselot Deckers, Babette Martin, Ella Herpels, Pauline Gkekas, Sotirios Versées, Wim Verstraeten, Natalie Fauvart, Maarten Michiels, Jan Int J Mol Sci Article Even though the Obg protein is essential for bacterial viability, the cellular functions of this universally conserved GTPase remain enigmatic. Moreover, the influence of GTP and GDP binding on the activity of this protein is largely unknown. Previously, we identified a mutant isoform of ObgE (the Obg protein of Escherichia coli) that triggers cell death. In this research we explore the biochemical requirements for the toxic effect of this mutant ObgE* isoform, using cell death as a readily accessible read-out for protein activity. Both the absence of the N-terminal domain and a decreased GTP binding affinity neutralize ObgE*-mediated toxicity. Moreover, a deletion in the region that connects the N-terminal domain to the G domain likewise abolishes toxicity. Taken together, these data indicate that GTP binding by ObgE* triggers a conformational change that is transmitted to the N-terminal domain to confer toxicity. We therefore conclude that ObgE*–GTP, but not ObgE*–GDP, is the active form of ObgE* that is detrimental to cell viability. Based on these data, we speculate that also for wild-type ObgE, GTP binding triggers conformational changes that affect the N-terminal domain and thereby control ObgE function. MDPI 2019-12-18 /pmc/articles/PMC6982127/ /pubmed/31861427 http://dx.doi.org/10.3390/ijms21010016 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Dewachter, Liselot
Deckers, Babette
Martin, Ella
Herpels, Pauline
Gkekas, Sotirios
Versées, Wim
Verstraeten, Natalie
Fauvart, Maarten
Michiels, Jan
GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title_full GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title_fullStr GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title_full_unstemmed GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title_short GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
title_sort gtp binding is necessary for the activation of a toxic mutant isoform of the essential gtpase obge
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6982127/
https://www.ncbi.nlm.nih.gov/pubmed/31861427
http://dx.doi.org/10.3390/ijms21010016
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