Protein–protein interactions (PPIs) in all the molecular aspects that take place both inside and outside cells. However, determining experimentally the structure and affinity of PPIs is expensive and time consuming. Therefore, the development of computational tools, as a complement to experimental methods, is fundamental. Here, we present a computational suite: MODPIN, to model and predict the changes of binding affinity of PPIs. In this approach we use homology modeling to derive the structures of PPIs and score them using state-of-the-art scoring functions. We explore the conformational space of PPIs by generating not a single structural model but a collection of structural models with different conformations based on several templates. W...
Proteins are important macro-molecules of living creatures as they carry out important functions of ...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The main objective of this work is to build a simple but robust predictor of binding energy changes ...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
BackgroundProtein-protein interactions (PPIs) are intriguing targets for designing novel small-molec...
The aim of this thesis is to promote the understanding of protein-protein interactions (PPIs) by gai...
The aim of this thesis is to promote the understanding of protein-protein interactions (PPIs) by gai...
<div><p>The formation of protein-protein complexes is essential for proteins to perform their physio...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
Proteins are important macro-molecules of living creatures as they carry out important functions of ...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The main objective of this work is to build a simple but robust predictor of binding energy changes ...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Predicting the structure and thermodynamics of protein–protein interactions (PPIs) are key to a prop...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
Protein-protein interactions play a crucial role in all cellular functions and biological processes ...
BackgroundProtein-protein interactions (PPIs) are intriguing targets for designing novel small-molec...
The aim of this thesis is to promote the understanding of protein-protein interactions (PPIs) by gai...
The aim of this thesis is to promote the understanding of protein-protein interactions (PPIs) by gai...
<div><p>The formation of protein-protein complexes is essential for proteins to perform their physio...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
Proteins are important macro-molecules of living creatures as they carry out important functions of ...
Protein-protein Interactions are involved in most fundamental biological processes, with disease cau...
The main objective of this work is to build a simple but robust predictor of binding energy changes ...