Predicting the effect of amino acid substitutions on protein–protein affinity (typically evaluated via the change of protein binding free energy) is important for both understanding the disease-causing mechanism of missense mutations and guiding protein engineering. In addition, researchers are also interested in understanding which energy components are mostly affected by the mutation and how the mutation affects the overall structure of the corresponding protein. Here we report a webserver, the Single Amino Acid Mutation based change in Binding free Energy (SAAMBE) webserver, which addresses the demand for tools for predicting the change of protein binding free energy. SAAMBE is an easy to use webserver, which only requires that a coordin...
The prediction of mutation-induced free-energy changes in protein thermostability or protein–protein...
Abstract Background The rational design of modified proteins with controlled stability is of extreme...
A basic question of protein structural studies is to which extent mutations affect the stability. Th...
Predicting the effect of amino acid substitutions on protein–protein affinity (typically evaluated v...
<div><p>A new methodology termed Single Amino Acid Mutation based change in Binding free Energy (SAA...
A newmethodology termed Single Amino Acid Mutation based change in Binding free Energy (SAAMBE) was ...
Proteins are important macro-molecules of living creatures as they carry out important functions of ...
Motivation: Accurate prediction of protein stability is important for understanding the molecular un...
Relative alchemical binding free energy calculations are routinely used in drug discovery projects t...
This paper deals with prediction of influence of amino acids mutations on protein stability. The pre...
Here, we report a webserver for the improved SDM, used for predicting the effects of mutations on pr...
Predicting changes in protein binding affinity due to single amino acid mutations helps us better un...
Over the past two decades, several computational methods have been proposed to predict how missense ...
The free-energy difference of two physicochemical states is an essential value describing the stabil...
A Protein is a large molecule that consists of a vast number of atoms; one can only imagine the comp...
The prediction of mutation-induced free-energy changes in protein thermostability or protein–protein...
Abstract Background The rational design of modified proteins with controlled stability is of extreme...
A basic question of protein structural studies is to which extent mutations affect the stability. Th...
Predicting the effect of amino acid substitutions on protein–protein affinity (typically evaluated v...
<div><p>A new methodology termed Single Amino Acid Mutation based change in Binding free Energy (SAA...
A newmethodology termed Single Amino Acid Mutation based change in Binding free Energy (SAAMBE) was ...
Proteins are important macro-molecules of living creatures as they carry out important functions of ...
Motivation: Accurate prediction of protein stability is important for understanding the molecular un...
Relative alchemical binding free energy calculations are routinely used in drug discovery projects t...
This paper deals with prediction of influence of amino acids mutations on protein stability. The pre...
Here, we report a webserver for the improved SDM, used for predicting the effects of mutations on pr...
Predicting changes in protein binding affinity due to single amino acid mutations helps us better un...
Over the past two decades, several computational methods have been proposed to predict how missense ...
The free-energy difference of two physicochemical states is an essential value describing the stabil...
A Protein is a large molecule that consists of a vast number of atoms; one can only imagine the comp...
The prediction of mutation-induced free-energy changes in protein thermostability or protein–protein...
Abstract Background The rational design of modified proteins with controlled stability is of extreme...
A basic question of protein structural studies is to which extent mutations affect the stability. Th...