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Identification of an Archaeal Presenilin-Like Intramembrane Protease

BACKGROUND: The GXGD-type diaspartyl intramembrane protease, presenilin, constitutes the catalytic core of the γ-secretase multi-protein complex responsible for activating critical signaling cascades during development and for the production of β-amyloid peptides (Aβ) implicated in Alzheimer's...

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Autores principales: Torres-Arancivia, Celia, Ross, Carolyn M., Chavez, Jose, Assur, Zahra, Dolios, Georgia, Mancia, Filippo, Ubarretxena-Belandia, Iban
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947513/
https://www.ncbi.nlm.nih.gov/pubmed/20927381
http://dx.doi.org/10.1371/journal.pone.0013072
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author Torres-Arancivia, Celia
Ross, Carolyn M.
Chavez, Jose
Assur, Zahra
Dolios, Georgia
Mancia, Filippo
Ubarretxena-Belandia, Iban
author_facet Torres-Arancivia, Celia
Ross, Carolyn M.
Chavez, Jose
Assur, Zahra
Dolios, Georgia
Mancia, Filippo
Ubarretxena-Belandia, Iban
author_sort Torres-Arancivia, Celia
collection PubMed
description BACKGROUND: The GXGD-type diaspartyl intramembrane protease, presenilin, constitutes the catalytic core of the γ-secretase multi-protein complex responsible for activating critical signaling cascades during development and for the production of β-amyloid peptides (Aβ) implicated in Alzheimer's disease. The only other known GXGD-type diaspartyl intramembrane proteases are the eukaryotic signal peptide peptidases (SPPs). The presence of presenilin-like enzymes outside eukaryots has not been demonstrated. Here we report the existence of presenilin-like GXGD-type diaspartyl intramembrane proteases in archaea. METHODOLOGY AND PRINCIPAL FINDINGS: We have employed in vitro activity assays to show that MCMJR1, a polytopic membrane protein from the archaeon Methanoculleus marisnigri JR1, is an intramembrane protease bearing the signature YD and GXGD catalytic motifs of presenilin-like enzymes. Mass spectrometry analysis showed MCMJR1 could cleave model intramembrane protease substrates at several sites within their transmembrane region. Remarkably, MCMJR1 could also cleave substrates derived from the β-amyloid precursor protein (APP) without the need of protein co-factors, as required by presenilin. Two distinct cleavage sites within the transmembrane domain of APP could be identified, one of which coincided with Aβ40, the predominant site processed by γ-secretase. Finally, an established presenilin and SPP transition-state analog inhibitor could inhibit MCMJR1. CONCLUSIONS AND SIGNIFICANCE: Our findings suggest that a primitive GXGD-type diaspartyl intramembrane protease from archaea can recapitulate key biochemical properties of eukaryotic presenilins and SPPs. MCMJR1 promises to be a more tractable, simpler system for in depth structural and mechanistic studies of GXGD-type diaspartyl intramembrane proteases.
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spelling pubmed-29475132010-10-06 Identification of an Archaeal Presenilin-Like Intramembrane Protease Torres-Arancivia, Celia Ross, Carolyn M. Chavez, Jose Assur, Zahra Dolios, Georgia Mancia, Filippo Ubarretxena-Belandia, Iban PLoS One Research Article BACKGROUND: The GXGD-type diaspartyl intramembrane protease, presenilin, constitutes the catalytic core of the γ-secretase multi-protein complex responsible for activating critical signaling cascades during development and for the production of β-amyloid peptides (Aβ) implicated in Alzheimer's disease. The only other known GXGD-type diaspartyl intramembrane proteases are the eukaryotic signal peptide peptidases (SPPs). The presence of presenilin-like enzymes outside eukaryots has not been demonstrated. Here we report the existence of presenilin-like GXGD-type diaspartyl intramembrane proteases in archaea. METHODOLOGY AND PRINCIPAL FINDINGS: We have employed in vitro activity assays to show that MCMJR1, a polytopic membrane protein from the archaeon Methanoculleus marisnigri JR1, is an intramembrane protease bearing the signature YD and GXGD catalytic motifs of presenilin-like enzymes. Mass spectrometry analysis showed MCMJR1 could cleave model intramembrane protease substrates at several sites within their transmembrane region. Remarkably, MCMJR1 could also cleave substrates derived from the β-amyloid precursor protein (APP) without the need of protein co-factors, as required by presenilin. Two distinct cleavage sites within the transmembrane domain of APP could be identified, one of which coincided with Aβ40, the predominant site processed by γ-secretase. Finally, an established presenilin and SPP transition-state analog inhibitor could inhibit MCMJR1. CONCLUSIONS AND SIGNIFICANCE: Our findings suggest that a primitive GXGD-type diaspartyl intramembrane protease from archaea can recapitulate key biochemical properties of eukaryotic presenilins and SPPs. MCMJR1 promises to be a more tractable, simpler system for in depth structural and mechanistic studies of GXGD-type diaspartyl intramembrane proteases. Public Library of Science 2010-09-29 /pmc/articles/PMC2947513/ /pubmed/20927381 http://dx.doi.org/10.1371/journal.pone.0013072 Text en Torres-Arancivia et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Torres-Arancivia, Celia
Ross, Carolyn M.
Chavez, Jose
Assur, Zahra
Dolios, Georgia
Mancia, Filippo
Ubarretxena-Belandia, Iban
Identification of an Archaeal Presenilin-Like Intramembrane Protease
title Identification of an Archaeal Presenilin-Like Intramembrane Protease
title_full Identification of an Archaeal Presenilin-Like Intramembrane Protease
title_fullStr Identification of an Archaeal Presenilin-Like Intramembrane Protease
title_full_unstemmed Identification of an Archaeal Presenilin-Like Intramembrane Protease
title_short Identification of an Archaeal Presenilin-Like Intramembrane Protease
title_sort identification of an archaeal presenilin-like intramembrane protease
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947513/
https://www.ncbi.nlm.nih.gov/pubmed/20927381
http://dx.doi.org/10.1371/journal.pone.0013072
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