Literature DB >> 26931725

Electromagnetic-field effects on structure and dynamics of amyloidogenic peptides.

Nevena Todorova1, Alan Bentvelzen1, Niall J English2, Irene Yarovsky1.   

Abstract

Electromagnetic fields (EMFs) are ever-present, and so is the need to better understand their influence on human health and biological matter in general. The interaction between a molecular system and external EMF can alter the structure, and dynamical behaviour, and, hence, biological function of proteins with uncertain health consequences. This urges a detailed investigation of EMF-induced effects on basic protein biophysics. Here, we used all-atom non-equilibrium molecular dynamics simulations to understand and quantify the response mechanisms of the amyloidogenic apoC-II(60-70) peptides to non-ionising radiation by modelling their behaviour under external electromagnetic and electric fields of different strengths. Our simulations show high strength fields (>0.04 V/nm) cause structural changes in apoC-II(60-70) due to the peptide dipole alignment along the applied field direction, which disrupts the inherent β-hairpin conformation known to be the intermediate state for fibril formation. The intermediate field-strength range (0.04-0.004 V/nm) causes a significant acceleration in peptide dynamics, which leads to the increased population of structures with fibril-inhibiting characteristics, such as the separated N- and C-termini and colocation of the aromatic residues at the same peptide face. In contrast, lower field strengths (<0.004 V/nm) promote the formation of the amyloid-prone hairpin structures relative to the ambient conditions. These findings suggest that intermediate-strength electromagnetic fields could be considered for designing alternative treatments of amyloid diseases, while the very high and low field strengths could be employed for engineering well-ordered fibrillar aggregates for non-medicinal applications.

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Year:  2016        PMID: 26931725     DOI: 10.1063/1.4941108

Source DB:  PubMed          Journal:  J Chem Phys        ISSN: 0021-9606            Impact factor:   3.488


  16 in total

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Review 2.  Bioelectromagnetics Research within an Australian Context: The Australian Centre for Electromagnetic Bioeffects Research (ACEBR).

Authors:  Sarah P Loughran; Md Shahriar Al Hossain; Alan Bentvelzen; Mark Elwood; John Finnie; Joseph Horvat; Steve Iskra; Elena P Ivanova; Jim Manavis; Chathuranga Keerawella Mudiyanselage; Alireza Lajevardipour; Boris Martinac; Robert McIntosh; Raymond McKenzie; Mislav Mustapic; Yoshitaka Nakayama; Elena Pirogova; M Harunur Rashid; Nigel A Taylor; Nevena Todorova; Peter M Wiedemann; Robert Vink; Andrew Wood; Irene Yarovsky; Rodney J Croft
Journal:  Int J Environ Res Public Health       Date:  2016-09-29       Impact factor: 3.390

3.  Investigating Ebola virus pathogenicity using molecular dynamics.

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4.  Tubulin response to intense nanosecond-scale electric field in molecular dynamics simulation.

Authors:  Paolo Marracino; Daniel Havelka; Jiří Průša; Micaela Liberti; Jack Tuszynski; Ahmed T Ayoub; Francesca Apollonio; Michal Cifra
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5.  A Clinical Trial of Transcranial Electromagnetic Treatment in Alzheimer's Disease: Cognitive Enhancement and Associated Changes in Cerebrospinal Fluid, Blood, and Brain Imaging.

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6.  Molecular dynamics simulation of the nanosecond pulsed electric field effect on kinesin nanomotor.

Authors:  Jiří Průša; Michal Cifra
Journal:  Sci Rep       Date:  2019-12-23       Impact factor: 4.379

7.  Could Microwave Irradiation Cause Misfolding of Peptides?

Authors:  Martin Gladovic; Chris Oostenbrink; Urban Bren
Journal:  J Chem Theory Comput       Date:  2020-03-20       Impact factor: 6.006

8.  Electro-opening of a microtubule lattice in silico.

Authors:  Jiří Průša; Ahmed Taha Ayoub; Djamel Eddine Chafai; Daniel Havelka; Michal Cifra
Journal:  Comput Struct Biotechnol J       Date:  2021-03-04       Impact factor: 7.271

9.  Effects of Externally Applied Electric Fields on the Manipulation of Solvated-Chignolin Folding: Static- versus Alternating-Field Dichotomy at Play.

Authors:  HaoLun Wu; Mohammad Reza Ghaani; Zdeněk Futera; Niall J English
Journal:  J Phys Chem B       Date:  2022-01-10       Impact factor: 2.991

10.  Human Aquaporin 4 Gating Dynamics under Perpendicularly-Oriented Electric-Field Impulses: A Molecular Dynamics Study.

Authors:  Paolo Marracino; Micaela Liberti; Erika Trapani; Christian J Burnham; Massimiliano Avena; José-Antonio Garate; Francesca Apollonio; Niall J English
Journal:  Int J Mol Sci       Date:  2016-07-14       Impact factor: 5.923

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