In the course of evolution, proteins show a remarkable conservation of their three-dimensional structure and their biological function, leading to strong evolutionary constraints on the sequence variability between homologous proteins. Our method aims at extracting such constraints from rapidly accumulating sequence data, and thereby at inferring protein structure and function from sequence information alone. Recently, global statistical inference methods (e.g. direct-coupling analysis, sparse inverse covariance estimation) have achieved a breakthrough towards this aim, and their predictions have been successfully implemented into tertiary and quaternary protein structure prediction methods. However, due to the discrete nature of the underl...
Identifying residue coupling relationships within a protein family can provide important insights in...
An understanding of protein tertiary structure is important for both basic and translational researc...
Advances in sequencing technologies have revolutionized the life sciences. The explosion of genomic ...
In the course of evolution, proteins show a remarkable conservation of their three-dimensional struc...
<div><p>In the course of evolution, proteins show a remarkable conservation of their three-dimension...
International audienceIn the course of evolution, proteins show a remarkable conservation of their t...
In the course of evolution, proteins show a remarkable conservation of their three-dimensional struc...
International audienceCoevolution of residues in contact imposes strong statistical constraints on t...
International audienceCoevolution of residues in contact imposes strong statistical constraints on t...
The recent application of models from inverse statistical mechanics to protein sequence data in has ...
Identifying residue coupling relationships within a protein family can provide important insights in...
The recent application of models from inverse statistical mechanics to protein sequence data in has ...
Despite continuous efforts in automating experimental structure determination and systematic target ...
Residue coevolution refers to a biological assumption that residue pairs covary during evolution if ...
An understanding of protein tertiary structure is important for both basic and translational researc...
Identifying residue coupling relationships within a protein family can provide important insights in...
An understanding of protein tertiary structure is important for both basic and translational researc...
Advances in sequencing technologies have revolutionized the life sciences. The explosion of genomic ...
In the course of evolution, proteins show a remarkable conservation of their three-dimensional struc...
<div><p>In the course of evolution, proteins show a remarkable conservation of their three-dimension...
International audienceIn the course of evolution, proteins show a remarkable conservation of their t...
In the course of evolution, proteins show a remarkable conservation of their three-dimensional struc...
International audienceCoevolution of residues in contact imposes strong statistical constraints on t...
International audienceCoevolution of residues in contact imposes strong statistical constraints on t...
The recent application of models from inverse statistical mechanics to protein sequence data in has ...
Identifying residue coupling relationships within a protein family can provide important insights in...
The recent application of models from inverse statistical mechanics to protein sequence data in has ...
Despite continuous efforts in automating experimental structure determination and systematic target ...
Residue coevolution refers to a biological assumption that residue pairs covary during evolution if ...
An understanding of protein tertiary structure is important for both basic and translational researc...
Identifying residue coupling relationships within a protein family can provide important insights in...
An understanding of protein tertiary structure is important for both basic and translational researc...
Advances in sequencing technologies have revolutionized the life sciences. The explosion of genomic ...