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Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers

Here, we describe a novel missense mutation in the amyloid precursor protein (APP) causing a lysine-to-asparagine substitution at position 687 (APP770; herein, referred to as K16N according to amyloid-β (Aβ) numbering) resulting in an early onset dementia with an autosomal dominant inheritance patte...

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Autores principales: Kaden, Daniela, Harmeier, Anja, Weise, Christoph, Munter, Lisa M, Althoff, Veit, Rost, Benjamin R, Hildebrand, Peter W, Schmitz, Dietmar, Schaefer, Michael, Lurz, Rudi, Skodda, Sabine, Yamamoto, Raina, Arlt, Sönke, Finckh, Ulrich, Multhaup, Gerd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: WILEY-VCH Verlag 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3407951/
https://www.ncbi.nlm.nih.gov/pubmed/22514144
http://dx.doi.org/10.1002/emmm.201200239
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author Kaden, Daniela
Harmeier, Anja
Weise, Christoph
Munter, Lisa M
Althoff, Veit
Rost, Benjamin R
Hildebrand, Peter W
Schmitz, Dietmar
Schaefer, Michael
Lurz, Rudi
Skodda, Sabine
Yamamoto, Raina
Arlt, Sönke
Finckh, Ulrich
Multhaup, Gerd
author_facet Kaden, Daniela
Harmeier, Anja
Weise, Christoph
Munter, Lisa M
Althoff, Veit
Rost, Benjamin R
Hildebrand, Peter W
Schmitz, Dietmar
Schaefer, Michael
Lurz, Rudi
Skodda, Sabine
Yamamoto, Raina
Arlt, Sönke
Finckh, Ulrich
Multhaup, Gerd
author_sort Kaden, Daniela
collection PubMed
description Here, we describe a novel missense mutation in the amyloid precursor protein (APP) causing a lysine-to-asparagine substitution at position 687 (APP770; herein, referred to as K16N according to amyloid-β (Aβ) numbering) resulting in an early onset dementia with an autosomal dominant inheritance pattern. The K16N mutation is located exactly at the α-secretase cleavage site and influences both APP and Aβ. First, due to the K16N mutation APP secretion is affected and a higher amount of Aβ peptides is being produced. Second, Aβ peptides carrying the K16N mutation are unique in that the peptide itself is not harmful to neuronal cells. Severe toxicity, however, is evident upon equimolar mixture of wt and mutant peptides, mimicking the heterozygous state of the subject. Furthermore, Aβ42 K16N inhibits fibril formation of Aβ42 wild-type. Even more, Aβ42 K16N peptides are protected against clearance activity by the major Aβ-degrading enzyme neprilysin. Thus the mutation characterized here harbours a combination of risk factors that synergistically may contribute to the development of early onset Alzheimer disease.
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spelling pubmed-34079512012-09-17 Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers Kaden, Daniela Harmeier, Anja Weise, Christoph Munter, Lisa M Althoff, Veit Rost, Benjamin R Hildebrand, Peter W Schmitz, Dietmar Schaefer, Michael Lurz, Rudi Skodda, Sabine Yamamoto, Raina Arlt, Sönke Finckh, Ulrich Multhaup, Gerd EMBO Mol Med Research Articles Here, we describe a novel missense mutation in the amyloid precursor protein (APP) causing a lysine-to-asparagine substitution at position 687 (APP770; herein, referred to as K16N according to amyloid-β (Aβ) numbering) resulting in an early onset dementia with an autosomal dominant inheritance pattern. The K16N mutation is located exactly at the α-secretase cleavage site and influences both APP and Aβ. First, due to the K16N mutation APP secretion is affected and a higher amount of Aβ peptides is being produced. Second, Aβ peptides carrying the K16N mutation are unique in that the peptide itself is not harmful to neuronal cells. Severe toxicity, however, is evident upon equimolar mixture of wt and mutant peptides, mimicking the heterozygous state of the subject. Furthermore, Aβ42 K16N inhibits fibril formation of Aβ42 wild-type. Even more, Aβ42 K16N peptides are protected against clearance activity by the major Aβ-degrading enzyme neprilysin. Thus the mutation characterized here harbours a combination of risk factors that synergistically may contribute to the development of early onset Alzheimer disease. WILEY-VCH Verlag 2012-07 2012-04-19 /pmc/articles/PMC3407951/ /pubmed/22514144 http://dx.doi.org/10.1002/emmm.201200239 Text en Copyright © 2012 EMBO Molecular Medicine
spellingShingle Research Articles
Kaden, Daniela
Harmeier, Anja
Weise, Christoph
Munter, Lisa M
Althoff, Veit
Rost, Benjamin R
Hildebrand, Peter W
Schmitz, Dietmar
Schaefer, Michael
Lurz, Rudi
Skodda, Sabine
Yamamoto, Raina
Arlt, Sönke
Finckh, Ulrich
Multhaup, Gerd
Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title_full Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title_fullStr Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title_full_unstemmed Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title_short Novel APP/Aβ mutation K16N produces highly toxic heteromeric Aβ oligomers
title_sort novel app/aβ mutation k16n produces highly toxic heteromeric aβ oligomers
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3407951/
https://www.ncbi.nlm.nih.gov/pubmed/22514144
http://dx.doi.org/10.1002/emmm.201200239
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