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Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1

Presenilin (PS1 or PS2) is an essential component of the active γ-secretase complex that liberates the Aβ peptides from amyloid precursor protein (APP). PS1 is regarded as an atypical aspartyl protease harboring two essential aspartic acids in the context of the sequence D257LV and D385FI, respectiv...

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Autores principales: Carter, Donald B, Dunn, Edwige, Pauley, Adele M, McKinley, Denise D, Fleck, Timothy J, Ellerbrook, Brenda R, Stratman, Nancy C, Zhou, Xiangdong, Himes, Carol S, Nye, Jeffrey S, Tomasselli, Alfredo, Yan, Riqiang
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2405781/
https://www.ncbi.nlm.nih.gov/pubmed/18474109
http://dx.doi.org/10.1186/1750-1326-3-6
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author Carter, Donald B
Dunn, Edwige
Pauley, Adele M
McKinley, Denise D
Fleck, Timothy J
Ellerbrook, Brenda R
Stratman, Nancy C
Zhou, Xiangdong
Himes, Carol S
Nye, Jeffrey S
Tomasselli, Alfredo
Yan, Riqiang
author_facet Carter, Donald B
Dunn, Edwige
Pauley, Adele M
McKinley, Denise D
Fleck, Timothy J
Ellerbrook, Brenda R
Stratman, Nancy C
Zhou, Xiangdong
Himes, Carol S
Nye, Jeffrey S
Tomasselli, Alfredo
Yan, Riqiang
author_sort Carter, Donald B
collection PubMed
description Presenilin (PS1 or PS2) is an essential component of the active γ-secretase complex that liberates the Aβ peptides from amyloid precursor protein (APP). PS1 is regarded as an atypical aspartyl protease harboring two essential aspartic acids in the context of the sequence D257LV and D385FI, respectively, rather than the typical DTG...DTG catalytic motif of classical aspartyl proteases. In the present studies, we introduced the sequence DTG in PS1 at and around the catalytic D257 and D385 residues to generate three PS1 mutants: D257TG, D385TG, and the double-mutant D257TG/D385TG. The effects of these changes on the γ-secretase activity in the presence or absence of γ-secretase inhibitors and modulators were investigated. The results showed that PS1 mutants having D385TG robustly enhanced Aβ(42 )production compared to the wild type (wt), and were more sensitive than wt to inhibition by a classical aspartyl protease transition state mimic, and fenchylamine, a sulfonamide derivative. Unlike wt PS1 and some of its clinical mutants, all three PS1 artificial mutants decreased cleavage of Notch S3-site, suggesting that these artificial mutations may trigger conformational changes at the substrate docking and catalytic site that cause alteration of substrate specificity and inhibition pattern. Consistent with this notion, we have found that NSAID enzymatic inhibitors of COX, known modulators of the γ-secretase activity, cause PS1 mutants containing D385TG to produce higher levels of both Aβ(38 )and Aβ(42), but to reduce levels of Aβ(39), showing a pattern of Aβ formation different from that observed with wild type PS1 and its clinical mutants. This study provides an important structural clue for the rational design of drugs to inhibit processing of APP at the γ-site without interfering with Notch processing.
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spelling pubmed-24057812008-05-30 Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1 Carter, Donald B Dunn, Edwige Pauley, Adele M McKinley, Denise D Fleck, Timothy J Ellerbrook, Brenda R Stratman, Nancy C Zhou, Xiangdong Himes, Carol S Nye, Jeffrey S Tomasselli, Alfredo Yan, Riqiang Mol Neurodegener Research Article Presenilin (PS1 or PS2) is an essential component of the active γ-secretase complex that liberates the Aβ peptides from amyloid precursor protein (APP). PS1 is regarded as an atypical aspartyl protease harboring two essential aspartic acids in the context of the sequence D257LV and D385FI, respectively, rather than the typical DTG...DTG catalytic motif of classical aspartyl proteases. In the present studies, we introduced the sequence DTG in PS1 at and around the catalytic D257 and D385 residues to generate three PS1 mutants: D257TG, D385TG, and the double-mutant D257TG/D385TG. The effects of these changes on the γ-secretase activity in the presence or absence of γ-secretase inhibitors and modulators were investigated. The results showed that PS1 mutants having D385TG robustly enhanced Aβ(42 )production compared to the wild type (wt), and were more sensitive than wt to inhibition by a classical aspartyl protease transition state mimic, and fenchylamine, a sulfonamide derivative. Unlike wt PS1 and some of its clinical mutants, all three PS1 artificial mutants decreased cleavage of Notch S3-site, suggesting that these artificial mutations may trigger conformational changes at the substrate docking and catalytic site that cause alteration of substrate specificity and inhibition pattern. Consistent with this notion, we have found that NSAID enzymatic inhibitors of COX, known modulators of the γ-secretase activity, cause PS1 mutants containing D385TG to produce higher levels of both Aβ(38 )and Aβ(42), but to reduce levels of Aβ(39), showing a pattern of Aβ formation different from that observed with wild type PS1 and its clinical mutants. This study provides an important structural clue for the rational design of drugs to inhibit processing of APP at the γ-site without interfering with Notch processing. BioMed Central 2008-05-12 /pmc/articles/PMC2405781/ /pubmed/18474109 http://dx.doi.org/10.1186/1750-1326-3-6 Text en Copyright © 2008 Carter et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Carter, Donald B
Dunn, Edwige
Pauley, Adele M
McKinley, Denise D
Fleck, Timothy J
Ellerbrook, Brenda R
Stratman, Nancy C
Zhou, Xiangdong
Himes, Carol S
Nye, Jeffrey S
Tomasselli, Alfredo
Yan, Riqiang
Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title_full Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title_fullStr Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title_full_unstemmed Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title_short Changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in Presenilin 1
title_sort changes in γ-secretase activity and specificity caused by the introduction of consensus aspartyl protease active motif in presenilin 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2405781/
https://www.ncbi.nlm.nih.gov/pubmed/18474109
http://dx.doi.org/10.1186/1750-1326-3-6
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