The aim of this review is to show how the challenging problem of understanding the physico-chemical basis of protein misfolding and aggregation which are at the origin of plaque formation in amyloid pathologies can be successfully investigated with a combination of modern spectroscopic techniques and advanced first principle numerical simulations. Within the vast group of diseases (more than 20) characterized by extra-cellular deposition of fibrillar material and generically called Amyloidosis, we shall focus on the Alzheimer's disease, a progressive and devastating neurodegenerative pathology affecting an important fraction of the world aged population. Well identified peptides (the so called A beta peptides) undergo a misfolding process during the development of the disease. An important, but not yet fully elucidated, r le appears to be played in these processes by transition metals (mainly copper and zinc) that have been observed to be present in large amounts in patient's neurological plaques. Starting from this observation, a number of interesting results concerning the structural properties of the relevant metalpeptide binding site, emerging from the interplay between X-ray Absorption Spectroscopy experiments, and ab initio molecular dynamics simulations of the Car-Parrinello type will be reported and discussed.

Morante, S. (2008). The Role of Metals in beta-Amyloid Peptide Aggregation: X-Ray Spectroscopy and Numerical Simulations. CURRENT ALZHEIMER RESEARCH, 5(6), 508-524 [10.2174/156720508786898505].

The Role of Metals in beta-Amyloid Peptide Aggregation: X-Ray Spectroscopy and Numerical Simulations

MORANTE, SILVIA
2008-01-01

Abstract

The aim of this review is to show how the challenging problem of understanding the physico-chemical basis of protein misfolding and aggregation which are at the origin of plaque formation in amyloid pathologies can be successfully investigated with a combination of modern spectroscopic techniques and advanced first principle numerical simulations. Within the vast group of diseases (more than 20) characterized by extra-cellular deposition of fibrillar material and generically called Amyloidosis, we shall focus on the Alzheimer's disease, a progressive and devastating neurodegenerative pathology affecting an important fraction of the world aged population. Well identified peptides (the so called A beta peptides) undergo a misfolding process during the development of the disease. An important, but not yet fully elucidated, r le appears to be played in these processes by transition metals (mainly copper and zinc) that have been observed to be present in large amounts in patient's neurological plaques. Starting from this observation, a number of interesting results concerning the structural properties of the relevant metalpeptide binding site, emerging from the interplay between X-ray Absorption Spectroscopy experiments, and ab initio molecular dynamics simulations of the Car-Parrinello type will be reported and discussed.
2008
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore FIS/07 - FISICA APPLICATA (A BENI CULTURALI, AMBIENTALI, BIOLOGIA E MEDICINA)
English
Aβ-peptide; Ab initio molecular dynamics; Metal ions; X-ray absorption spectroscopy
Morante, S. (2008). The Role of Metals in beta-Amyloid Peptide Aggregation: X-Ray Spectroscopy and Numerical Simulations. CURRENT ALZHEIMER RESEARCH, 5(6), 508-524 [10.2174/156720508786898505].
Morante, S
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/37487
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