In this thesis, a series of molecular dynamics simulations have been performed in order to explore some fundamental mechanisms in biological research, such as salting effects and ion-mediated molecular interactions. A general goal of this research is to obtain an atomic level understanding of the structure, dynamics and thermodynamics of co-solutes (including typical ions like Na+, Mg2+ and complex molecules like urea, guanidinium chloride) and their effects on molecular and electrostatic interactions in protein folding/unfolding and DNA packaging. More interest was paid to the mechanisms that cause protein denaturation in urea solution, the electrostatic and conformational effects that induce, stabilize and regulate DNA condensation in the...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
Molecular dynamics simulations elucidate the structural collapse shown by two ssDNAs of the same bas...
Using molecular dynamics simulations, we investigated effects of inorganic salts on the structure an...
In performing protein-denaturation experiments, it is common to employ different kinds of denaturant...
AbstractIn performing protein-denaturation experiments, it is common to employ different kinds of de...
Molecular dynamics (MD) simulation is a fundamental approach to allow researchers to study the molec...
Nucleic acids are highly charged polyelectrolytes. Their interactions with counterions are of great ...
Nucleic acids are highly charged polyelectrolytes. Their interactions with counterions are of great ...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
The effects of salt concentration on the flexibility and charge distribution of a DNA chain are prob...
Molecular dynamics simulation is a powerful computational tool for studying biomolecular structure ...
Ion-specific effects on the aqueous solubilities of biomolecules are relevant in many areas of bioch...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
Molecular dynamics simulations elucidate the structural collapse shown by two ssDNAs of the same bas...
Using molecular dynamics simulations, we investigated effects of inorganic salts on the structure an...
In performing protein-denaturation experiments, it is common to employ different kinds of denaturant...
AbstractIn performing protein-denaturation experiments, it is common to employ different kinds of de...
Molecular dynamics (MD) simulation is a fundamental approach to allow researchers to study the molec...
Nucleic acids are highly charged polyelectrolytes. Their interactions with counterions are of great ...
Nucleic acids are highly charged polyelectrolytes. Their interactions with counterions are of great ...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
The effects of salt concentration on the flexibility and charge distribution of a DNA chain are prob...
Molecular dynamics simulation is a powerful computational tool for studying biomolecular structure ...
Ion-specific effects on the aqueous solubilities of biomolecules are relevant in many areas of bioch...
Title: Ion-Protein Interactions Author: Mgr. et Mgr. Jan Heyda Department: Physical and Macromolecul...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
This thesis aims to understand the nanoscale effects of water as a structured solvent on the phenome...
Molecular dynamics simulations elucidate the structural collapse shown by two ssDNAs of the same bas...