Protein-protein interactions are challenging targets for modulation by small molecules. Here, we propose an approach that harnesses the increasing structural coverage of protein complexes to identify small molecules that may target protein interactions. Specifically, we identify ligand and protein binding sites that overlap upon alignment of homologous proteins. Of the 2,619 protein structure families observed to bind proteins, 1,028 also bind small molecules (250-1000 Da), and 197 exhibit a statistically significant (p<0.01) overlap between ligand and protein binding positions. These "bi-functional positions", which bind both ligands and proteins, are particularly enriched in tyrosine and tryptophan residues, similar to "energetic hotsp...
Shape complementarity and non-covalent interactions are believed to drive protein-ligand interaction...
The binding affinity of a protein–protein interaction is concentrated at amino acids known as hot sp...
Protein-protein interactions are ubiquitous in Biology and therefore central to understand living or...
Protein-protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Protein–protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Protein–protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Small molecules that modulate protein–protein interactions are of great interest for chemical biolog...
AbstractThe modulation of protein–protein interactions (PPIs) by small drug-like molecules is a rela...
Protein-Protein Interactions (PPIs) are the key components in many cellular processes including sign...
<div><p>Many biological activities originate from interactions between small-molecule ligands and th...
Small molecules that bind at protein-protein interfaces may either block or stabilize protein-protei...
AbstractStructures of protein complexes provide atomistic insights into protein interactions. Human ...
Small molecules that bind at protein-protein interfaces may either block or stabilize protein-protei...
The lack of a deep understanding of how proteins interact remains an important roadblock in advancin...
<div><p>Small molecules that bind at protein-protein interfaces may either block or stabilize protei...
Shape complementarity and non-covalent interactions are believed to drive protein-ligand interaction...
The binding affinity of a protein–protein interaction is concentrated at amino acids known as hot sp...
Protein-protein interactions are ubiquitous in Biology and therefore central to understand living or...
Protein-protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Protein–protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Protein–protein interactions are challenging targets for modulation by small molecules. Here, we pro...
Small molecules that modulate protein–protein interactions are of great interest for chemical biolog...
AbstractThe modulation of protein–protein interactions (PPIs) by small drug-like molecules is a rela...
Protein-Protein Interactions (PPIs) are the key components in many cellular processes including sign...
<div><p>Many biological activities originate from interactions between small-molecule ligands and th...
Small molecules that bind at protein-protein interfaces may either block or stabilize protein-protei...
AbstractStructures of protein complexes provide atomistic insights into protein interactions. Human ...
Small molecules that bind at protein-protein interfaces may either block or stabilize protein-protei...
The lack of a deep understanding of how proteins interact remains an important roadblock in advancin...
<div><p>Small molecules that bind at protein-protein interfaces may either block or stabilize protei...
Shape complementarity and non-covalent interactions are believed to drive protein-ligand interaction...
The binding affinity of a protein–protein interaction is concentrated at amino acids known as hot sp...
Protein-protein interactions are ubiquitous in Biology and therefore central to understand living or...