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Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein

Alzheimer’s disease affects people all over the world, regardless of nationality, gender or social status. An adequate study of the disease requires essential understanding of the molecular fundamentals of the pathogenesis. The amyloid β-peptide, which forms amyloid plaques in the brain of people wi...

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Autores principales: Nadezhdin, K.D., Bocharova, O.V., Bocharov, E.V., Arseniev, A.S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: A.I. Gordeyev 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347594/
https://www.ncbi.nlm.nih.gov/pubmed/22649674
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author Nadezhdin, K.D.
Bocharova, O.V.
Bocharov, E.V.
Arseniev, A.S.
author_facet Nadezhdin, K.D.
Bocharova, O.V.
Bocharov, E.V.
Arseniev, A.S.
author_sort Nadezhdin, K.D.
collection PubMed
description Alzheimer’s disease affects people all over the world, regardless of nationality, gender or social status. An adequate study of the disease requires essential understanding of the molecular fundamentals of the pathogenesis. The amyloid β-peptide, which forms amyloid plaques in the brain of people with Alzheimer’s disease, is the product of sequential cleavage of a single-span membrane amyloid precursor protein (APP). More than half of the APP mutations found to be associated with familial forms of Alzheimer’s disease are located in its transmembrane domain. The pathogenic mutations presumably affect the structural-dynamic properties of the APP transmembrane domain by changing its conformational stability and/or lateral dimerization. In the present study, the structure and dynamics of the recombinant peptide corresponding to the APP fragment, Gln686-Lys726, which comprises the APP transmembrane domain with an adjacent N-terminal juxtamembrane sequence, were determined in the membrane mimetic environment composed of detergent micelles using NMR spectroscopy. The structure obtained in dodecylphosphocholine micelles consists of two α-helices: a short surface-associated juxtamembrane helix (Lys687-Asp694) and a long transmembrane helix (Gly700-Leu723), both connected via a mobile loop region. A minor bend of the transmembrane α-helix is observed near the paired residues Gly708-Gly709. A cholesterol-binding hydrophobic cavity is apparently formed under the loop region, where the juxtamembrane α-helix comes into contact with the membrane surface near the N-terminus of the transmembrane α-helix.
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spelling pubmed-33475942012-05-30 Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein Nadezhdin, K.D. Bocharova, O.V. Bocharov, E.V. Arseniev, A.S. Acta Naturae Research Article Alzheimer’s disease affects people all over the world, regardless of nationality, gender or social status. An adequate study of the disease requires essential understanding of the molecular fundamentals of the pathogenesis. The amyloid β-peptide, which forms amyloid plaques in the brain of people with Alzheimer’s disease, is the product of sequential cleavage of a single-span membrane amyloid precursor protein (APP). More than half of the APP mutations found to be associated with familial forms of Alzheimer’s disease are located in its transmembrane domain. The pathogenic mutations presumably affect the structural-dynamic properties of the APP transmembrane domain by changing its conformational stability and/or lateral dimerization. In the present study, the structure and dynamics of the recombinant peptide corresponding to the APP fragment, Gln686-Lys726, which comprises the APP transmembrane domain with an adjacent N-terminal juxtamembrane sequence, were determined in the membrane mimetic environment composed of detergent micelles using NMR spectroscopy. The structure obtained in dodecylphosphocholine micelles consists of two α-helices: a short surface-associated juxtamembrane helix (Lys687-Asp694) and a long transmembrane helix (Gly700-Leu723), both connected via a mobile loop region. A minor bend of the transmembrane α-helix is observed near the paired residues Gly708-Gly709. A cholesterol-binding hydrophobic cavity is apparently formed under the loop region, where the juxtamembrane α-helix comes into contact with the membrane surface near the N-terminus of the transmembrane α-helix. A.I. Gordeyev 2011 /pmc/articles/PMC3347594/ /pubmed/22649674 Text en Copyright © 2011 Park-media Ltd. http://creativecommons.org/licenses/by/2.0/ 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 work is properly cited.
spellingShingle Research Article
Nadezhdin, K.D.
Bocharova, O.V.
Bocharov, E.V.
Arseniev, A.S.
Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title_full Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title_fullStr Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title_full_unstemmed Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title_short Structural and Dynamic Study of the Transmembrane Domain of the Amyloid Precursor Protein
title_sort structural and dynamic study of the transmembrane domain of the amyloid precursor protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3347594/
https://www.ncbi.nlm.nih.gov/pubmed/22649674
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