A profound understanding of the molecular interactions between receptors and ligands is important throughout diverse research, such as protein design, drug discovery, or neuroscience. What determines specificity and how do proteins discriminate against similar ligands? In this study, we analyzed factors that determine binding in two homologs belonging to the well-known superfamily of periplasmic binding proteins, PotF and PotD. Building on a previously designed construct, modes of polyamine binding were swapped. This change of specificity was approached by analyzing local differences in the binding pocket as well as overall conformational changes in the protein. Throughout the study, protein variants were generated and characterized structu...
Protein-Protein Interactions (PPIs) are the key components in many cellular processes including sign...
Alternative splicing produces multiple mRNAs from a single gene. It is a powerful mechanism used to ...
<div><p>Engineering specific interactions between proteins and small molecules is extremely useful f...
Recognition and discrimination of small molecules are crucial for biological processes in living sys...
Periplasmic binding proteins PBPs are ubiquitous receptors in gram negative bacteria. They sense s...
PotD protein is a periplasmic binding protein and the primary receptor of the polyamine transport sy...
The type III secretion system (T3SS) of Pseudomonas aeruginosa is a key virulence determinant whose ...
We acknowledge the Pole Scientifique de Modeisation Numerique (PSMN) for computational resources.Int...
The periplasmic binding protein (PBP) superfamily is found throughout the genosphere of both prokary...
The binding of spermidine and putrescine to mitochondrial membranes was studied by applying a thermo...
AbstractA structural similarity between spermidine/putrescine-binding protein and maltose-binding pr...
Identifying elements of protein structures that create differences in protein-ligand binding specifi...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Most function prediction methods that identify cognate ligands from binding site analyses work on th...
Protein-Protein Interactions (PPIs) are the key components in many cellular processes including sign...
Alternative splicing produces multiple mRNAs from a single gene. It is a powerful mechanism used to ...
<div><p>Engineering specific interactions between proteins and small molecules is extremely useful f...
Recognition and discrimination of small molecules are crucial for biological processes in living sys...
Periplasmic binding proteins PBPs are ubiquitous receptors in gram negative bacteria. They sense s...
PotD protein is a periplasmic binding protein and the primary receptor of the polyamine transport sy...
The type III secretion system (T3SS) of Pseudomonas aeruginosa is a key virulence determinant whose ...
We acknowledge the Pole Scientifique de Modeisation Numerique (PSMN) for computational resources.Int...
The periplasmic binding protein (PBP) superfamily is found throughout the genosphere of both prokary...
The binding of spermidine and putrescine to mitochondrial membranes was studied by applying a thermo...
AbstractA structural similarity between spermidine/putrescine-binding protein and maltose-binding pr...
Identifying elements of protein structures that create differences in protein-ligand binding specifi...
Engineering specific interactions between proteins and small molecules is extremely useful for biolo...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Most function prediction methods that identify cognate ligands from binding site analyses work on th...
Protein-Protein Interactions (PPIs) are the key components in many cellular processes including sign...
Alternative splicing produces multiple mRNAs from a single gene. It is a powerful mechanism used to ...
<div><p>Engineering specific interactions between proteins and small molecules is extremely useful f...