The conformational behavior of the wild-type endonucleases I-DmoI and two of its mutants has been studied in the presence and in the absence of DNA target sequences by means of extended molecular dynamics simulations. Our results show that in the absence of DNA, the three protein forms explore a similar essential conformational space, whereas when bound to the same DNA target sequence of 25 base pairs, they diversify and restrain the subspace explored. In addition, the differences in the essential subspaces explored by the residues near the catalytic site for both the bound and unbound forms are discussed in background of the experimental protein activity.Peer Reviewe
AbstractMolecular dynamics simulations and free energy calculations of the wild-type EcoRI-DNA compl...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
DNA polymerases are a family of molecular machines involved in high-fidelity DNA replication and rep...
Here, we present the theoretical-computational modelling of the free energy barrier of the phosphodi...
AbstractEcoO109I is a type II restriction endonuclease that functions as a dimer in solution. Upon D...
Here, we present the theoretical–computational modelling of the free energy barrier of the phosphodi...
ABSTRACT Molecular dynamics simulations and free energy calculations of the wild-type EcoRI-DNA comp...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
I-DmoI, from the hyperthermophilic archaeon Desulfurococcus mobilis, belongs to the LAGLIDADG homing...
High-energy ultraviolet radiation damages DNA through the formation of cyclobutane pyrimidine dimers...
The work presented in my dissertation focuses on the conformational studies of bio-molecules includi...
In proteins,conformational change impacting the function is well-investigated in the past decades,wh...
AbstractMolecular dynamics simulations and free energy calculations of the wild-type EcoRI-DNA compl...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
Herein we investigate the molecular bases of DNA polymerase I conformational dynamics that underlie ...
DNA polymerases are a family of molecular machines involved in high-fidelity DNA replication and rep...
Here, we present the theoretical-computational modelling of the free energy barrier of the phosphodi...
AbstractEcoO109I is a type II restriction endonuclease that functions as a dimer in solution. Upon D...
Here, we present the theoretical–computational modelling of the free energy barrier of the phosphodi...
ABSTRACT Molecular dynamics simulations and free energy calculations of the wild-type EcoRI-DNA comp...
During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly distingu...
I-DmoI, from the hyperthermophilic archaeon Desulfurococcus mobilis, belongs to the LAGLIDADG homing...
High-energy ultraviolet radiation damages DNA through the formation of cyclobutane pyrimidine dimers...
The work presented in my dissertation focuses on the conformational studies of bio-molecules includi...
In proteins,conformational change impacting the function is well-investigated in the past decades,wh...
AbstractMolecular dynamics simulations and free energy calculations of the wild-type EcoRI-DNA compl...
AbstractWe combined atomistic molecular-dynamics simulations with quantum-mechanical calculations to...
<div><p>During DNA replication, DNA polymerases follow an induced fit mechanism in order to rapidly ...