Energy Study at Different Temperatures for Active Site of Azurin in Water, Ethanol, Methanol and Gas Phase by Monte Carlo Simulations

Authors

  • K. Shahanipour -
  • T. Nejad Satari -
Abstract:

The interaction between the solute and the solsent molecules play a crucial role in understanding the various molecular processes involved in chemistry and biochemistry, so in this work the potential energy of active site of azurin have been calculated in solvent by the Monte Carlo simulation. In this paper we present quantitative results of Monte Carlo calculations of potential energies of active site of azurin in water, ethanol, methanol and gas phase at three temperatures 300, 305,310 K. According to the obtained results, the potential energy of active site conformation is decreased quickly in water and the greater stability in this study is related to at.er and then methanol. It has been found that in different solsent media the highest potential energy value and then the least stability correspond to ethanol and also through increasing the dielectric constant of solvent the structural energy values decreased. Thus, the protein environment, which is often aqueous. aftects the structure. folding dynamic and stability, and, therefore, the functionality of globular proteins. In fact, solvent-protein interactions, together with the interactions between residues in the protein matrix, facilitate the folding process and establishment of intermolecular interactions with other complex systems Furthermore, to be properly folded and fully functional, a protein requires a minimum lesel of hydration.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

energy study at different temperatures for active site of azurin in water, ethanol, methanol and gas phase by monte carlo simulations

the interaction between the solute and the solsent molecules play a crucial role in understanding the various molecular processes involved in chemistry and biochemistry, so in this work the potential energy of active site of azurin have been calculated in solvent by the monte carlo simulation. in this paper we present quantitative results of monte carlo calculations of potential energies of ...

full text

Gyration Radius and Energy Study at Different Temperatures for Acetylcholine Receptor Protein in Gas Phase by Monte Carlo, Molecular and Langevin Dynamics Simulations

The determination of gyration radius is a strong research for configuration of a Macromolecule. Italso reflects molecular compactness shape. In this work, to characterize the behavior of theprotein, we observe quantities such as the radius of gyration and the average energy. We studiedthe changes of these factors as a function of temperature for Acetylcholine receptor protein in gasphase with n...

full text

gyration radius and energy study at different temperatures for acetylcholine receptor protein in gas phase by monte carlo, molecular and langevin dynamics simulations

the determination of gyration radius is a strong research for configuration of a macromolecule. italso reflects molecular compactness shape. in this work, to characterize the behavior of theprotein, we observe quantities such as the radius of gyration and the average energy. we studiedthe changes of these factors as a function of temperature for acetylcholine receptor protein in gasphase with n...

full text

Sensing of Methanol and Ethanol with Nano-Structured SnO2 (110) in Gas Phase: Monte Carlo Simulation

The SnO2 films deposited from inorganic precursors via sol–gel dip coating method have been found to be highly sensitive to methanol and ethanol vapor. Three dimensional nano-structure materials have attracted the attention of many researches because the possibility to apply them for near future devices in sensors, catalysis and energy related. The sensitivity and selectivity of SnO2 (110) nano...

full text

Energy study at different solvents for potassium Channel Protein by Monte Carlo, Molecular and Langevin Dynamics Simulations

Potassium Channels allow potassium flux and are essential for the generation of electric current acrossexcitable membranes. Potassium Channels are also the targets of various intracellular controlmechanisms; such that the suboptimal regulation of channel function might be related to pathologicalconditions. Realistic studies of ion current in biologic channels present a major challenge for compu...

full text

sensing of methanol and ethanol with nano-structured sno2 (110) in gas phase: monte carlo simulation

the sno2 films deposited from inorganic precursors via sol–gel dip coating method have been found to be highly sensitive to methanol and ethanol vapor. three dimensional nano-structure materials have attracted the attention of many researches because the possibility to apply them for near future devices in sensors, catalysis and energy related. the sensitivity and selectivity of sno2 (110) nano...

full text

My Resources

Save resource for easier access later

Save to my library Already added to my library

{@ msg_add @}


Journal title

volume 6  issue 4

pages  7- 12

publication date 2010-02-01

By following a journal you will be notified via email when a new issue of this journal is published.

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023