The number of amino acids that occupy a given protein site during evolution reflects the selective constraints operating on the site. This evolutionary variability is strongly influenced by the structural properties of the site in the native structure, and it is quantified either through sequence entropy or through substitution rates. However, while the sequence entropy only depends on the equilibrium frequencies of the amino acids, the substitution rate also depends on the exchangeability matrix that describes mutations in the mathematical model of the substitution process. Here we apply two variants of a mathematical model of protein evolution with selection for protein stability, both against unfolding and against misfolding. Exploiting ...
Adaptive mutations play an important role in molecular evolution. However, the frequency and nature ...
It has long been recognized that certain sites within a protein, such as sites in the protein core o...
Abstract Background Evolution at a protein site can b...
The number of amino acids that occupy a given protein site during evolution reflects the selective c...
Adequate representations of protein evolution should consider how the acceptance of mutations depend...
BACKGROUND: Since thermodynamic stability is a global property of proteins that has to be conserved ...
Abstract Background Since thermodynamic stability is a global property of proteins that has to be co...
Adequate representations of protein evolution should consider how the acceptance of mutations depend...
Evolutionary-rate variation among sites within proteins depends on functional and biophysical proper...
Understanding the patterns of evolutionary sequence divergence is fundamental for comparative analys...
To investigate how the properties of individual amino acids result in proteins with particular struc...
Thermodynamic stability is a crucial fitness constraint in protein evolution and is a central factor...
Proteins evolve under a myriad of biophysical selection pressures that collectively control the patt...
Local protein interactions ("molecular context" effects) dictate amino acid replacements a...
Motivation: Amino acid changing mutations in proteins are contstrained by purifying selection and ac...
Adaptive mutations play an important role in molecular evolution. However, the frequency and nature ...
It has long been recognized that certain sites within a protein, such as sites in the protein core o...
Abstract Background Evolution at a protein site can b...
The number of amino acids that occupy a given protein site during evolution reflects the selective c...
Adequate representations of protein evolution should consider how the acceptance of mutations depend...
BACKGROUND: Since thermodynamic stability is a global property of proteins that has to be conserved ...
Abstract Background Since thermodynamic stability is a global property of proteins that has to be co...
Adequate representations of protein evolution should consider how the acceptance of mutations depend...
Evolutionary-rate variation among sites within proteins depends on functional and biophysical proper...
Understanding the patterns of evolutionary sequence divergence is fundamental for comparative analys...
To investigate how the properties of individual amino acids result in proteins with particular struc...
Thermodynamic stability is a crucial fitness constraint in protein evolution and is a central factor...
Proteins evolve under a myriad of biophysical selection pressures that collectively control the patt...
Local protein interactions ("molecular context" effects) dictate amino acid replacements a...
Motivation: Amino acid changing mutations in proteins are contstrained by purifying selection and ac...
Adaptive mutations play an important role in molecular evolution. However, the frequency and nature ...
It has long been recognized that certain sites within a protein, such as sites in the protein core o...
Abstract Background Evolution at a protein site can b...