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Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators

[Image: see text] γ-Secretase catalyzes the final cleavage of the amyloid precursor protein (APP), resulting in the production of amyloid-β (Aβ) peptides with different carboxyl termini. Presenilin (PSEN) and amyloid precursor protein (APP) mutations linked to early onset familial Alzheimer’s diseas...

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Autores principales: Jung, Joo In, Ran, Yong, Cruz, Pedro E., Rosario, Awilda M., Ladd, Thomas B., Kukar, Thomas L., Koo, Edward H., Felsenstein, Kevin M., Golde, Todd E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3985764/
https://www.ncbi.nlm.nih.gov/pubmed/24620716
http://dx.doi.org/10.1021/bi401521t
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author Jung, Joo In
Ran, Yong
Cruz, Pedro E.
Rosario, Awilda M.
Ladd, Thomas B.
Kukar, Thomas L.
Koo, Edward H.
Felsenstein, Kevin M.
Golde, Todd E.
author_facet Jung, Joo In
Ran, Yong
Cruz, Pedro E.
Rosario, Awilda M.
Ladd, Thomas B.
Kukar, Thomas L.
Koo, Edward H.
Felsenstein, Kevin M.
Golde, Todd E.
author_sort Jung, Joo In
collection PubMed
description [Image: see text] γ-Secretase catalyzes the final cleavage of the amyloid precursor protein (APP), resulting in the production of amyloid-β (Aβ) peptides with different carboxyl termini. Presenilin (PSEN) and amyloid precursor protein (APP) mutations linked to early onset familial Alzheimer’s disease modify the profile of Aβ isoforms generated, by altering both the initial γ-secretase cleavage site and subsequent processivity in a manner that leads to increased levels of the more amyloidogenic Aβ42 and in some circumstances Aβ43. Compounds termed γ-secretase modulators (GSMs) and inverse GSMs (iGSMs) can decrease and increase levels of Aβ42, respectively. As GSMs lower the level of production of pathogenic forms of long Aβ isoforms, they are of great interest as potential Alzheimer’s disease therapeutics. The factors that regulate GSM modulation are not fully understood; however, there is a growing body of evidence that supports the hypothesis that GSM activity is influenced by the amino acid sequence of the γ-secretase substrate. We have evaluated whether mutations near the luminal border of the transmembrane domain (TMD) of APP alter the ability of both acidic, nonsteroidal anti-inflammatory drug-derived carboxylate and nonacidic, phenylimidazole-derived classes of GSMs and iGSMs to modulate γ-secretase cleavage. Our data show that point mutations can dramatically reduce the sensitivity to modulation of cleavage by GSMs but have weaker effects on iGSM activity. These studies support the concept that the effect of GSMs may be substrate selective; for APP, it is dependent on the amino acid sequence of the substrate near the junction of the extracellular domain and luminal segment of the TMD.
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spelling pubmed-39857642015-03-12 Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators Jung, Joo In Ran, Yong Cruz, Pedro E. Rosario, Awilda M. Ladd, Thomas B. Kukar, Thomas L. Koo, Edward H. Felsenstein, Kevin M. Golde, Todd E. Biochemistry [Image: see text] γ-Secretase catalyzes the final cleavage of the amyloid precursor protein (APP), resulting in the production of amyloid-β (Aβ) peptides with different carboxyl termini. Presenilin (PSEN) and amyloid precursor protein (APP) mutations linked to early onset familial Alzheimer’s disease modify the profile of Aβ isoforms generated, by altering both the initial γ-secretase cleavage site and subsequent processivity in a manner that leads to increased levels of the more amyloidogenic Aβ42 and in some circumstances Aβ43. Compounds termed γ-secretase modulators (GSMs) and inverse GSMs (iGSMs) can decrease and increase levels of Aβ42, respectively. As GSMs lower the level of production of pathogenic forms of long Aβ isoforms, they are of great interest as potential Alzheimer’s disease therapeutics. The factors that regulate GSM modulation are not fully understood; however, there is a growing body of evidence that supports the hypothesis that GSM activity is influenced by the amino acid sequence of the γ-secretase substrate. We have evaluated whether mutations near the luminal border of the transmembrane domain (TMD) of APP alter the ability of both acidic, nonsteroidal anti-inflammatory drug-derived carboxylate and nonacidic, phenylimidazole-derived classes of GSMs and iGSMs to modulate γ-secretase cleavage. Our data show that point mutations can dramatically reduce the sensitivity to modulation of cleavage by GSMs but have weaker effects on iGSM activity. These studies support the concept that the effect of GSMs may be substrate selective; for APP, it is dependent on the amino acid sequence of the substrate near the junction of the extracellular domain and luminal segment of the TMD. American Chemical Society 2014-03-12 2014-04-01 /pmc/articles/PMC3985764/ /pubmed/24620716 http://dx.doi.org/10.1021/bi401521t Text en Copyright © 2014 American Chemical Society
spellingShingle Jung, Joo In
Ran, Yong
Cruz, Pedro E.
Rosario, Awilda M.
Ladd, Thomas B.
Kukar, Thomas L.
Koo, Edward H.
Felsenstein, Kevin M.
Golde, Todd E.
Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title_full Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title_fullStr Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title_full_unstemmed Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title_short Complex Relationships between Substrate Sequence and Sensitivity to Alterations in γ-Secretase Processivity Induced by γ-Secretase Modulators
title_sort complex relationships between substrate sequence and sensitivity to alterations in γ-secretase processivity induced by γ-secretase modulators
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3985764/
https://www.ncbi.nlm.nih.gov/pubmed/24620716
http://dx.doi.org/10.1021/bi401521t
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