The sequence selectivity of small molecules binding to the minor groove of DNA can be predicted by 'in silico footprinting'. Any potential ligand can be docked in the minor groove and then moved along it using simple simulation techniques. By applying a simple scoring function to the trajectory after energy minimization, the preferred binding site can be identified. We show application to all known noncovalent binding modes, namely 1:1 ligand:DNA binding (including hairpin ligands) and 2:1 side-by-side binding, with various DNA base pair sequences and show excellent agreement with experimental results from X-ray crystallography, NMR, and gel-based footprinting
It has been shown that heterocyclic diamidines, a class of minor groove binders, are promising antim...
The aim of this work was devoted to develop a method to predict Delta G values for a series of minor...
Molecular recognition of the DNA minor groove is a multi-route process which can involve many steps ...
The sequence selectivity of small molecules binding to the minor groove of DNA can be predicted by '...
The structural and thermodynamic basis for the strength and selectivity of the interactions of minor...
Footprinting is a simple method for assessing the sequence selectivity of DNA-binding ligands. The m...
Molecular recognition of DNA by small molecules and proteins is a fundamental problem in structural ...
There has been a profound interest in designing small molecules that interact in sequence-selective ...
Natural and synthetic heterocyclic cations that bind to the DNA minor groove have demonstrated effec...
Ken Breslauer began studies on the thermodynamics of small cationic molecules binding in the DNA min...
The double-stranded DNA of the genome contains both sequence information directly relating to the pr...
Thermodynamic and structural studies are commonly utilized to optimize small molecules for specific ...
DNA-sequence and structure dependence on the formation of minor groove complexes at 5′-XCTAGY-3′ by ...
The recognition of specific DNA sequences is fundamental to the central dogma of molecular biology w...
AbstractStudies on minor groove binders provide new insights into DNA structure and recognition, inf...
It has been shown that heterocyclic diamidines, a class of minor groove binders, are promising antim...
The aim of this work was devoted to develop a method to predict Delta G values for a series of minor...
Molecular recognition of the DNA minor groove is a multi-route process which can involve many steps ...
The sequence selectivity of small molecules binding to the minor groove of DNA can be predicted by '...
The structural and thermodynamic basis for the strength and selectivity of the interactions of minor...
Footprinting is a simple method for assessing the sequence selectivity of DNA-binding ligands. The m...
Molecular recognition of DNA by small molecules and proteins is a fundamental problem in structural ...
There has been a profound interest in designing small molecules that interact in sequence-selective ...
Natural and synthetic heterocyclic cations that bind to the DNA minor groove have demonstrated effec...
Ken Breslauer began studies on the thermodynamics of small cationic molecules binding in the DNA min...
The double-stranded DNA of the genome contains both sequence information directly relating to the pr...
Thermodynamic and structural studies are commonly utilized to optimize small molecules for specific ...
DNA-sequence and structure dependence on the formation of minor groove complexes at 5′-XCTAGY-3′ by ...
The recognition of specific DNA sequences is fundamental to the central dogma of molecular biology w...
AbstractStudies on minor groove binders provide new insights into DNA structure and recognition, inf...
It has been shown that heterocyclic diamidines, a class of minor groove binders, are promising antim...
The aim of this work was devoted to develop a method to predict Delta G values for a series of minor...
Molecular recognition of the DNA minor groove is a multi-route process which can involve many steps ...