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Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site

γ-Secretase generates the peptides of Alzheimer's disease, Aβ(40) and Aβ(42), by cleaving the amyloid precursor protein within its transmembrane domain. γ-Secretase also cleaves numerous other substrates, raising concerns about γ-secretase inhibitor off-target effects. Another important class o...

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Autores principales: Uemura, Kengo, Farner, Katherine C., Hashimoto, Tadafumi, Nasser-Ghodsi, Navine, Wolfe, Michael S., Koo, Edward H., Hyman, Bradley T., Berezovska, Oksana
Formato: Texto
Lenguaje:English
Publicado: Nature Publishing Group 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060602/
https://www.ncbi.nlm.nih.gov/pubmed/21119643
http://dx.doi.org/10.1038/ncomms1129
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author Uemura, Kengo
Farner, Katherine C.
Hashimoto, Tadafumi
Nasser-Ghodsi, Navine
Wolfe, Michael S.
Koo, Edward H.
Hyman, Bradley T.
Berezovska, Oksana
author_facet Uemura, Kengo
Farner, Katherine C.
Hashimoto, Tadafumi
Nasser-Ghodsi, Navine
Wolfe, Michael S.
Koo, Edward H.
Hyman, Bradley T.
Berezovska, Oksana
author_sort Uemura, Kengo
collection PubMed
description γ-Secretase generates the peptides of Alzheimer's disease, Aβ(40) and Aβ(42), by cleaving the amyloid precursor protein within its transmembrane domain. γ-Secretase also cleaves numerous other substrates, raising concerns about γ-secretase inhibitor off-target effects. Another important class of drugs, γ-secretase modulators, alter the cleavage site of γ-secretase on amyloid precursor protein, changing the Aβ(42)/Aβ(40) ratio, and are thus a promising therapeutic approach for Alzheimer's disease. However, the target for γ-secretase modulators is uncertain, with some data suggesting that they function on γ-secretase, whereas others support their binding to the amyloid precursor. In this paper we address this controversy by using a fluorescence resonance energy transfer-based assay to examine whether γ-secretase modulators alter Presenilin-1/γ-secretase conformation in intact cells in the absence of its natural substrates such as amyloid precursor protein and Notch. We report that the γ-secretase allosteric site is located within the γ-secretase complex, but substrate docking is needed for γ-secretase modulators to access this site.
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spelling pubmed-30606022011-03-29 Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site Uemura, Kengo Farner, Katherine C. Hashimoto, Tadafumi Nasser-Ghodsi, Navine Wolfe, Michael S. Koo, Edward H. Hyman, Bradley T. Berezovska, Oksana Nat Commun Article γ-Secretase generates the peptides of Alzheimer's disease, Aβ(40) and Aβ(42), by cleaving the amyloid precursor protein within its transmembrane domain. γ-Secretase also cleaves numerous other substrates, raising concerns about γ-secretase inhibitor off-target effects. Another important class of drugs, γ-secretase modulators, alter the cleavage site of γ-secretase on amyloid precursor protein, changing the Aβ(42)/Aβ(40) ratio, and are thus a promising therapeutic approach for Alzheimer's disease. However, the target for γ-secretase modulators is uncertain, with some data suggesting that they function on γ-secretase, whereas others support their binding to the amyloid precursor. In this paper we address this controversy by using a fluorescence resonance energy transfer-based assay to examine whether γ-secretase modulators alter Presenilin-1/γ-secretase conformation in intact cells in the absence of its natural substrates such as amyloid precursor protein and Notch. We report that the γ-secretase allosteric site is located within the γ-secretase complex, but substrate docking is needed for γ-secretase modulators to access this site. Nature Publishing Group 2010-11-30 /pmc/articles/PMC3060602/ /pubmed/21119643 http://dx.doi.org/10.1038/ncomms1129 Text en Copyright © 2010, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-Share Alike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Article
Uemura, Kengo
Farner, Katherine C.
Hashimoto, Tadafumi
Nasser-Ghodsi, Navine
Wolfe, Michael S.
Koo, Edward H.
Hyman, Bradley T.
Berezovska, Oksana
Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title_full Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title_fullStr Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title_full_unstemmed Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title_short Substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
title_sort substrate docking to γ-secretase allows access of γ-secretase modulators to an allosteric site
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060602/
https://www.ncbi.nlm.nih.gov/pubmed/21119643
http://dx.doi.org/10.1038/ncomms1129
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