Literature DB >> 22325282

Effect of sequence variation on the mechanical response of amyloid fibrils probed by steered molecular dynamics simulation.

Hlengisizwe Ndlovu1, Alison E Ashcroft, Sheena E Radford, Sarah A Harris.   

Abstract

The mechanical failure of mature amyloid fibers produces fragments that act as seeds for the growth of new fibrils. Fragmentation may also be correlated with cytotoxicity. We have used steered atomistic molecular dynamics simulations to study the mechanical failure of fibrils formed by the amyloidogenic fragment of human amylin hIAPP20-29 subjected to force applied in a variety of directions. By introducing systematic variations to this peptide sequence in silico, we have also investigated the role of the amino-acid sequence in determining the mechanical stability of amyloid fibrils. Our calculations show that the force required to induce mechanical failure depends on the direction of the applied stress and upon the degree of structural order present in the β-sheet assemblies, which in turn depends on the peptide sequence. The results have implications for the importance of sequence-dependent mechanical properties on seeding the growth of new fibrils and the role of breakage events in cytotoxicity. Copyright Â
© 2012 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2012        PMID: 22325282      PMCID: PMC3274783          DOI: 10.1016/j.bpj.2011.12.047

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  50 in total

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  13 in total

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8.  Computational re-engineering of Amylin sequence with reduced amyloidogenic potential.

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9.  Molecular dynamics simulations of mechanical failure in polymorphic arrangements of amyloid fibrils containing structural defects.

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10.  Role of sequence and structural polymorphism on the mechanical properties of amyloid fibrils.

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