Literature DB >> 18036611

Amyloid toxicity is independent of polypeptide sequence, length and chirality.

M Teresa Pastor1, Nico Kümmerer, Vanessa Schubert, Alexandra Esteras-Chopo, Carlos G Dotti, Manuela López de la Paz, Luis Serrano.   

Abstract

By using an amyloid sequence pattern, here we have identified putative six-residue amyloidogenic stretches in several relevant amyloid proteins. Hexapeptides synthesized on the bases of the sequence stretches matching the pattern have been shown to form amyloid fibrils in vitro. As larger pathological peptides such as A beta(1-42) do, these short amyloid peptides form heterogeneous mixtures of small aggregates that induce cell death in PC12 cells and primary hippocampal neurons. Toxic mixtures of small aggregates from these hexapeptides bind to cell membranes and can be further internalized, as also observed for natural amyloid proteins. In neurons, toxic aggregates obtained from the full length A beta(1-42) amyloid peptide or their amyloid stretch A beta(16-21) peptide preferentially localize in synapses, leading to the re-organization of the underlying actin cytoskeleton. This process does not involve stereospecific interactions between membrane and toxic species as D-sequences are as toxic as L ones, suggesting that is not receptor mediated. Based on these results, we propose here that regardless of polypeptide sequence, length and amino acid chirality, amyloid prefibrillar aggregates exert their cytotoxic effect through a common cell death mechanism related to a particular quaternary structure. The degree of toxicity of these species seems to depend, however, on cell membrane composition.

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Year:  2007        PMID: 18036611     DOI: 10.1016/j.jmb.2007.08.012

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  20 in total

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5.  Replica exchange simulations of the thermodynamics of Abeta fibril growth.

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Journal:  Biophys J       Date:  2009-01       Impact factor: 4.033

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8.  The culprit behind amyloid beta peptide related neurotoxicity in Alzheimer's disease: oligomer size or conformation?

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10.  Interpeptide interactions induce helix to strand structural transition in Abeta peptides.

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Journal:  Proteins       Date:  2009-10
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