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Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation

YabT is a serine/threonine kinase of the Hanks family from Bacillus subtilis, which lacks the canonical extracellular signal receptor domain but is anchored to the membrane through a C-terminal transmembrane helix. A previous study demonstrated that a basic juxtamembrane region corresponds to a DNA-...

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Autores principales: Shi, Lei, Cavagnino, Andrea, Rabefiraisana, Jean-Luc, Lazar, Noureddine, Li de la Sierra-Gallay, Inès, Ochsenbein, Françoise, Valerio-Lepiniec, Marie, Urvoas, Agathe, Minard, Philippe, Mijakovic, Ivan, Nessler, Sylvie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333020/
https://www.ncbi.nlm.nih.gov/pubmed/30671027
http://dx.doi.org/10.3389/fmicb.2018.03014
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author Shi, Lei
Cavagnino, Andrea
Rabefiraisana, Jean-Luc
Lazar, Noureddine
Li de la Sierra-Gallay, Inès
Ochsenbein, Françoise
Valerio-Lepiniec, Marie
Urvoas, Agathe
Minard, Philippe
Mijakovic, Ivan
Nessler, Sylvie
author_facet Shi, Lei
Cavagnino, Andrea
Rabefiraisana, Jean-Luc
Lazar, Noureddine
Li de la Sierra-Gallay, Inès
Ochsenbein, Françoise
Valerio-Lepiniec, Marie
Urvoas, Agathe
Minard, Philippe
Mijakovic, Ivan
Nessler, Sylvie
author_sort Shi, Lei
collection PubMed
description YabT is a serine/threonine kinase of the Hanks family from Bacillus subtilis, which lacks the canonical extracellular signal receptor domain but is anchored to the membrane through a C-terminal transmembrane helix. A previous study demonstrated that a basic juxtamembrane region corresponds to a DNA-binding motif essential for the activation of YabT trans-autophosphorylation. YabT is expressed during spore development and localizes to the asymmetric septum where it specifically phosphorylates essential proteins involved in genome maintenance, such as RecA, SsbA, and YabA. YabT has also been shown to phosphorylate proteins involved in protein synthesis, such as AbrB and Ef-Tu, suggesting a possible regulatory role in the progressive metabolic quiescence of the forespore. Finally, cross phosphorylations with other protein kinases implicate YabT in the regulation of numerous other cellular processes. Using an artificial protein scaffold as crystallization helper, we determined the first crystal structure of this DNA-dependent bacterial protein kinase. This allowed us to trap the active conformation of the kinase domain of YabT. Using NMR, we showed that the basic juxtamembrane region of YabT is disordered in the absence of DNA in solution, just like it is in the crystal, and that it is stabilized upon DNA binding. In comparison with its closest structural homolog, the mycobacterial kinase PknB allowed us to discuss the dimerization mode of YabT. Together with phosphorylation assays and DNA-binding experiments, this structural analysis helped us to gain new insights into the regulatory activation mechanism of YabT.
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spelling pubmed-63330202019-01-22 Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation Shi, Lei Cavagnino, Andrea Rabefiraisana, Jean-Luc Lazar, Noureddine Li de la Sierra-Gallay, Inès Ochsenbein, Françoise Valerio-Lepiniec, Marie Urvoas, Agathe Minard, Philippe Mijakovic, Ivan Nessler, Sylvie Front Microbiol Microbiology YabT is a serine/threonine kinase of the Hanks family from Bacillus subtilis, which lacks the canonical extracellular signal receptor domain but is anchored to the membrane through a C-terminal transmembrane helix. A previous study demonstrated that a basic juxtamembrane region corresponds to a DNA-binding motif essential for the activation of YabT trans-autophosphorylation. YabT is expressed during spore development and localizes to the asymmetric septum where it specifically phosphorylates essential proteins involved in genome maintenance, such as RecA, SsbA, and YabA. YabT has also been shown to phosphorylate proteins involved in protein synthesis, such as AbrB and Ef-Tu, suggesting a possible regulatory role in the progressive metabolic quiescence of the forespore. Finally, cross phosphorylations with other protein kinases implicate YabT in the regulation of numerous other cellular processes. Using an artificial protein scaffold as crystallization helper, we determined the first crystal structure of this DNA-dependent bacterial protein kinase. This allowed us to trap the active conformation of the kinase domain of YabT. Using NMR, we showed that the basic juxtamembrane region of YabT is disordered in the absence of DNA in solution, just like it is in the crystal, and that it is stabilized upon DNA binding. In comparison with its closest structural homolog, the mycobacterial kinase PknB allowed us to discuss the dimerization mode of YabT. Together with phosphorylation assays and DNA-binding experiments, this structural analysis helped us to gain new insights into the regulatory activation mechanism of YabT. Frontiers Media S.A. 2019-01-08 /pmc/articles/PMC6333020/ /pubmed/30671027 http://dx.doi.org/10.3389/fmicb.2018.03014 Text en Copyright © 2019 Shi, Cavagnino, Rabefiraisana, Lazar, Li de la Sierra-Gallay, Ochsenbein, Valerio-Lepiniec, Urvoas, Minard, Mijakovic and Nessler. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Shi, Lei
Cavagnino, Andrea
Rabefiraisana, Jean-Luc
Lazar, Noureddine
Li de la Sierra-Gallay, Inès
Ochsenbein, Françoise
Valerio-Lepiniec, Marie
Urvoas, Agathe
Minard, Philippe
Mijakovic, Ivan
Nessler, Sylvie
Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title_full Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title_fullStr Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title_full_unstemmed Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title_short Structural Analysis of the Hanks-Type Protein Kinase YabT From Bacillus subtilis Provides New Insights in its DNA-Dependent Activation
title_sort structural analysis of the hanks-type protein kinase yabt from bacillus subtilis provides new insights in its dna-dependent activation
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333020/
https://www.ncbi.nlm.nih.gov/pubmed/30671027
http://dx.doi.org/10.3389/fmicb.2018.03014
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