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Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1

The bifunctional protein kinase-endoribonuclease Ire1 initiates splicing of the mRNA for the transcription factor Hac1 when unfolded proteins accumulate in the endoplasmic reticulum. Activation of Saccharomyces cerevisiae Ire1 coincides with autophosphorylation of its activation loop at S840, S841,...

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Autores principales: Armstrong, Michael C., Šestak, Sergej, Ali, Ahmed A., Sagini, Hanan A. M., Brown, Max, Baty, Karen, Treumann, Achim, Schröder, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5533888/
https://www.ncbi.nlm.nih.gov/pubmed/28559428
http://dx.doi.org/10.1128/MCB.00655-16
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author Armstrong, Michael C.
Šestak, Sergej
Ali, Ahmed A.
Sagini, Hanan A. M.
Brown, Max
Baty, Karen
Treumann, Achim
Schröder, Martin
author_facet Armstrong, Michael C.
Šestak, Sergej
Ali, Ahmed A.
Sagini, Hanan A. M.
Brown, Max
Baty, Karen
Treumann, Achim
Schröder, Martin
author_sort Armstrong, Michael C.
collection PubMed
description The bifunctional protein kinase-endoribonuclease Ire1 initiates splicing of the mRNA for the transcription factor Hac1 when unfolded proteins accumulate in the endoplasmic reticulum. Activation of Saccharomyces cerevisiae Ire1 coincides with autophosphorylation of its activation loop at S840, S841, T844, and S850. Mass spectrometric analysis of Ire1 expressed in Escherichia coli identified S837 as another potential phosphorylation site in vivo. Mutation of all five potential phosphorylation sites in the activation loop decreased, but did not completely abolish, splicing of HAC1 mRNA, induction of KAR2 and PDI1 mRNAs, and expression of a β-galactosidase reporter activated by Hac1(i). Phosphorylation site mutants survive low levels of endoplasmic reticulum stress better than IRE1 deletions strains. In vivo clustering and inactivation of Ire1 are not affected by phosphorylation site mutants. Mutation of D836 to alanine in the activation loop of phosphorylation site mutants nearly completely abolished HAC1 splicing, induction of KAR2, PDI1, and β-galactosidase reporters, and survival of ER stress, but it had no effect on clustering of Ire1. By itself, the D836A mutation does not confer a phenotype. These data argue that D836 can partially substitute for activation loop phosphorylation in activation of the endoribonuclease domain of Ire1.
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spelling pubmed-55338882017-08-08 Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1 Armstrong, Michael C. Šestak, Sergej Ali, Ahmed A. Sagini, Hanan A. M. Brown, Max Baty, Karen Treumann, Achim Schröder, Martin Mol Cell Biol Research Article The bifunctional protein kinase-endoribonuclease Ire1 initiates splicing of the mRNA for the transcription factor Hac1 when unfolded proteins accumulate in the endoplasmic reticulum. Activation of Saccharomyces cerevisiae Ire1 coincides with autophosphorylation of its activation loop at S840, S841, T844, and S850. Mass spectrometric analysis of Ire1 expressed in Escherichia coli identified S837 as another potential phosphorylation site in vivo. Mutation of all five potential phosphorylation sites in the activation loop decreased, but did not completely abolish, splicing of HAC1 mRNA, induction of KAR2 and PDI1 mRNAs, and expression of a β-galactosidase reporter activated by Hac1(i). Phosphorylation site mutants survive low levels of endoplasmic reticulum stress better than IRE1 deletions strains. In vivo clustering and inactivation of Ire1 are not affected by phosphorylation site mutants. Mutation of D836 to alanine in the activation loop of phosphorylation site mutants nearly completely abolished HAC1 splicing, induction of KAR2, PDI1, and β-galactosidase reporters, and survival of ER stress, but it had no effect on clustering of Ire1. By itself, the D836A mutation does not confer a phenotype. These data argue that D836 can partially substitute for activation loop phosphorylation in activation of the endoribonuclease domain of Ire1. American Society for Microbiology 2017-07-28 /pmc/articles/PMC5533888/ /pubmed/28559428 http://dx.doi.org/10.1128/MCB.00655-16 Text en Copyright © 2017 Armstrong et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Armstrong, Michael C.
Šestak, Sergej
Ali, Ahmed A.
Sagini, Hanan A. M.
Brown, Max
Baty, Karen
Treumann, Achim
Schröder, Martin
Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title_full Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title_fullStr Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title_full_unstemmed Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title_short Bypass of Activation Loop Phosphorylation by Aspartate 836 in Activation of the Endoribonuclease Activity of Ire1
title_sort bypass of activation loop phosphorylation by aspartate 836 in activation of the endoribonuclease activity of ire1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5533888/
https://www.ncbi.nlm.nih.gov/pubmed/28559428
http://dx.doi.org/10.1128/MCB.00655-16
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