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Nanosecond pulsed electric signals can affect electrostatic environment of proteins below the threshold of conformational effects: The case study of SOD1 with a molecular simulation study
- Source :
- PLoS ONE, Vol 14, Iss 8, p e0221685 (2019), PLoS ONE
- Publication Year :
- 2019
- Publisher :
- Public Library of Science (PLoS), 2019.
-
Abstract
- Electric fields can be a powerful tool to interact with enzymes or proteins, with an intriguing perspective to allow protein manipulation. Recently, researchers have focused the interest on intracellular enzyme modifications triggered by the application of nanosecond pulsed electric fields. These findings were also supported by theoretical predictions from molecular dynamics simulations focussing on significant variations in protein secondary structures. In this work, a theoretical study utilizing molecular dynamics simulations is proposed to explore effects of electric fields of high intensity and very short nanosecond duration applied to the superoxide dismutase (Cu/Zn-SOD or SOD-1), an important enzyme involved in the cellular antioxidant defence mechanism. The effects of 100-nanosecond pulsed electric fields, with intensities ranging from 108 to 7x108 V/m, on a single SOD1 enzyme are presented. We demonstrated that the lowest intensity of 108 V/m, although not inducing structural changes, can produce electrostatic modifications on the reaction centre of the enzyme, as apparent from the dipolar response and the electric field distribution of the protein active site. Electric pulses above 5x108 V/m produced a fast transition between the folded and a partially denatured state, as inferred by the secondary structures analysis. Finally, for the highest field intensity used (7x108 V/m), a not reversible transition toward an unfolded state was observed.
- Subjects :
- Protein Structure
Materials science
Protein Conformation
Science
Static Electricity
Molecular Dynamics Simulation
Dipole Moments
01 natural sciences
Biochemistry
03 medical and health sciences
Molecular dynamics
Protein structure
Superoxide Dismutase-1
Electromagnetism
Electricity
Electrostatics
Electric field
Catalytic Domain
0103 physical sciences
Static electricity
Macromolecular Structure Analysis
Biochemical Simulations
Molecular Biology
030304 developmental biology
0303 health sciences
Multidisciplinary
010304 chemical physics
Superoxide Dismutase
Physics
Water
Biology and Life Sciences
Proteins
Computational Biology
Nanosecond
Enzyme structure
Enzymes
Dipole
Dismutases
Electric Field
Chemical physics
Physical Sciences
Enzyme Structure
Enzymology
Medicine
Protein Multimerization
Research Article
Subjects
Details
- Language :
- English
- ISSN :
- 19326203
- Volume :
- 14
- Issue :
- 8
- Database :
- OpenAIRE
- Journal :
- PLoS ONE
- Accession number :
- edsair.doi.dedup.....86d07dfcdb84998df80db12e7c85a7df