The computational study of DNA and its interaction with ligands is a highly relevant area of research, with significant consequences for developing new therapeutic strategies. However, the computational description of such large and complex systems requires considering interactions of different types. All these considerations imply a real challenge for computational chemistry. Using quantum methods for the entire system requires significant computational resources, with improvements in parallelization and optimization of theoretical strategies. Computational methods, such as LS-DFT and DLPNO-CCSD(T), may allow performing ab initio QM calculations, including explicitly the electronic structure for large biological systems, at a reasonable co...
The DNA G-qadruplexes are one of the targets being actively explored for anti-cancer therapy by inhi...
We investigate the descriptions of several density functional theory functionals in modeling the int...
We apply DFT calculations to deoxydinucleoside monophosphates (dDMPs) which represent minimal fragme...
To gain better understanding of the stabilizing interactions between metal ions and DNA quadruplexes...
We provide theoretical predictions of the intrinsic stability of different arrangements of guanine q...
DNA quadruplexes have been the subject of investigation because of their biological relevance and be...
Molecular dynamics (MD) simulations, followed by density functional theory/molecular mechanics (DFT/...
The binding of small molecules with biological targets is associated to interesting chemical and bio...
There is a need for reliable rules of thumb for various applications in the area of biochemistry, su...
International audienceBiomolecules have complex structures, and noncovalent interactions are crucial...
In chemical and biological systems, various interactions that govern the chemical and physical prope...
Although DFT is the unrivaled method of choice for quantum chemical studies of bioinorganic problems...
In calculations performed with DFT there is a tendency of the purine cation to be delocalized over s...
In the past two decades, many research groups worldwide have tried to understand and categorize simp...
This thesis involves the use of large scale molecular dynamics simulations and associated analysis t...
The DNA G-qadruplexes are one of the targets being actively explored for anti-cancer therapy by inhi...
We investigate the descriptions of several density functional theory functionals in modeling the int...
We apply DFT calculations to deoxydinucleoside monophosphates (dDMPs) which represent minimal fragme...
To gain better understanding of the stabilizing interactions between metal ions and DNA quadruplexes...
We provide theoretical predictions of the intrinsic stability of different arrangements of guanine q...
DNA quadruplexes have been the subject of investigation because of their biological relevance and be...
Molecular dynamics (MD) simulations, followed by density functional theory/molecular mechanics (DFT/...
The binding of small molecules with biological targets is associated to interesting chemical and bio...
There is a need for reliable rules of thumb for various applications in the area of biochemistry, su...
International audienceBiomolecules have complex structures, and noncovalent interactions are crucial...
In chemical and biological systems, various interactions that govern the chemical and physical prope...
Although DFT is the unrivaled method of choice for quantum chemical studies of bioinorganic problems...
In calculations performed with DFT there is a tendency of the purine cation to be delocalized over s...
In the past two decades, many research groups worldwide have tried to understand and categorize simp...
This thesis involves the use of large scale molecular dynamics simulations and associated analysis t...
The DNA G-qadruplexes are one of the targets being actively explored for anti-cancer therapy by inhi...
We investigate the descriptions of several density functional theory functionals in modeling the int...
We apply DFT calculations to deoxydinucleoside monophosphates (dDMPs) which represent minimal fragme...