Protein folding and unfolding under the effect of exogenous perturbations remains a topic of great interest, further enhanced by recent technological developments in the field of signal generation that allow the use of intense ultrashort electric pulses to directly interact at microscopic level with biological matter. In this paper, we show results from molecular dynamics (MD) simulations of a single myoglobin molecule in water exposed to pulsed and static electric fields, ranging from 10(8) to 10(9) V/m, compared to data with unexposed conditions. We have found that the highest intensity (10(9) V/m) produced a fast transition (occurring within a few hundreds of picoseconds) between folded and unfolded states, as inferred by secondary struc...
In this paper we demonstrate how the potential energy surface of a protein, which determines its con...
A number of research studies have been conducted to understand the effects of external static and os...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210Myoglobin (M...
Protein folding and unfolding under the effect of exogenous perturbations remains a topic of great i...
The effect of pulsed and oscillating electric fields with different frequencies on the conformationa...
Electric fields can be a powerful tool to interact with enzymes or proteins, with an intriguing pers...
The investigation of possible protein-unfolding effects induced by high intensity electric field pul...
Non-thermal effects induced by exposure to microwave electromagnetic field (MW-EMF) at 1.95 MHz, a f...
The response of proteins to different forms of stress continues to be a topic of major interest, esp...
The dynamics of proteins are crucial for their function. However, commonly used techniques for study...
A series of molecular dynamics (MD) simulations up to 1 μs for bovine insulin monomer in different e...
International audienceLight absorption can trigger biologically relevant protein conformational chan...
Light absorption can trigger biologically relevant protein conformational changes. The light-induced...
The response of proteins to different forms of stress continues to be a topic of major interest, esp...
About one-quarter of all proteins use metal ions for storage, transport or enzymatic activity. We hy...
In this paper we demonstrate how the potential energy surface of a protein, which determines its con...
A number of research studies have been conducted to understand the effects of external static and os...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210Myoglobin (M...
Protein folding and unfolding under the effect of exogenous perturbations remains a topic of great i...
The effect of pulsed and oscillating electric fields with different frequencies on the conformationa...
Electric fields can be a powerful tool to interact with enzymes or proteins, with an intriguing pers...
The investigation of possible protein-unfolding effects induced by high intensity electric field pul...
Non-thermal effects induced by exposure to microwave electromagnetic field (MW-EMF) at 1.95 MHz, a f...
The response of proteins to different forms of stress continues to be a topic of major interest, esp...
The dynamics of proteins are crucial for their function. However, commonly used techniques for study...
A series of molecular dynamics (MD) simulations up to 1 μs for bovine insulin monomer in different e...
International audienceLight absorption can trigger biologically relevant protein conformational chan...
Light absorption can trigger biologically relevant protein conformational changes. The light-induced...
The response of proteins to different forms of stress continues to be a topic of major interest, esp...
About one-quarter of all proteins use metal ions for storage, transport or enzymatic activity. We hy...
In this paper we demonstrate how the potential energy surface of a protein, which determines its con...
A number of research studies have been conducted to understand the effects of external static and os...
Author Institution: Department of Physics, The Ohio State University, Columbus, OH 43210Myoglobin (M...