MotivationHomology detection enables grouping proteins into families and prediction of their structure and function. The range of application of homology-based predictions can be significantly extended by using sequence profiles and incorporation of local structural features. However, incorporation of the latter terms varies a lot between existing methods, and together with many examples of distant relations not recognized even by the best methods, suggests that further improvements are still possible.ResultsHere we describe recent improvements to the fold and function assignment system (FFAS) method, including adding optimized structural features (experimental or predicted), 'symmetrical' Z-score calculation and re-ranking the templates wi...
Recent advances in deep learning techniques have revolutionised protein structure modelling. Since A...
International audienceThe question of how best to compare and classify the 3D structures of proteins...
The structures of nearly a thousand sequence-unique proteins represent only 300 different 3D shapes,...
Fold recognition, assigning novel proteins to known structures, forms an important component of the ...
[[abstract]]The accurate classification of protein structure is critical and essential for protein...
The FFAS03 server provides a web interface to the third generation of the profile-profile alignment ...
Abstract:- The classification of protein structures is essential for their function determination in...
Protein structure prediction is one of the most important and difficult problems in computational mo...
Knowledge on protein folding has a profound impact on understanding the heterogeneity and molecular ...
Protein structure prediction is one of the most important and difficult problems in computational mo...
The classical sequence-structure-function paradigm for proteins illustrates that the amino acid sequ...
Motivation: The number of protein families has been estimated to be as small as 1000. Recent study s...
Motivation: In recent years, development of a single-method fold-recognition server lags behind cons...
Motivation: What constitutes a baseline level of success for protein fold recognition methods? As fo...
Fold recognition techniques assist the exploration of protein structures, and web-based servers are ...
Recent advances in deep learning techniques have revolutionised protein structure modelling. Since A...
International audienceThe question of how best to compare and classify the 3D structures of proteins...
The structures of nearly a thousand sequence-unique proteins represent only 300 different 3D shapes,...
Fold recognition, assigning novel proteins to known structures, forms an important component of the ...
[[abstract]]The accurate classification of protein structure is critical and essential for protein...
The FFAS03 server provides a web interface to the third generation of the profile-profile alignment ...
Abstract:- The classification of protein structures is essential for their function determination in...
Protein structure prediction is one of the most important and difficult problems in computational mo...
Knowledge on protein folding has a profound impact on understanding the heterogeneity and molecular ...
Protein structure prediction is one of the most important and difficult problems in computational mo...
The classical sequence-structure-function paradigm for proteins illustrates that the amino acid sequ...
Motivation: The number of protein families has been estimated to be as small as 1000. Recent study s...
Motivation: In recent years, development of a single-method fold-recognition server lags behind cons...
Motivation: What constitutes a baseline level of success for protein fold recognition methods? As fo...
Fold recognition techniques assist the exploration of protein structures, and web-based servers are ...
Recent advances in deep learning techniques have revolutionised protein structure modelling. Since A...
International audienceThe question of how best to compare and classify the 3D structures of proteins...
The structures of nearly a thousand sequence-unique proteins represent only 300 different 3D shapes,...