AbstractA great challenge in the proteomics and structural genomics era is to predict protein structure and function, including identification of those proteins that are partially or wholly unstructured. Disordered regions in proteins often contain short linear peptide motifs (e.g., SH3 ligands and targeting signals) that are important for protein function. We present here DisEMBL, a computational tool for prediction of disordered/unstructured regions within a protein sequence. As no clear definition of disorder exists, we have developed parameters based on several alternative definitions and introduced a new one based on the concept of “hot loops,” i.e., coils with high temperature factors. Avoiding potentially disordered segments in prote...
Motivation: Intrinsically disordered regions in proteins have no unique stable structures without th...
The role and function of a given protein is dependent on its structure. In recent years, however, nu...
Disordered regions, i.e., regions of proteins that do not adopt a stable three-dimensional structure...
AbstractA great challenge in the proteomics and structural genomics era is to predict protein struct...
A great challenge in the proteomics and structural genomics era is to predict protein structure and ...
The role and function of a given protein is dependent on its structure. In recent years, however, n...
Abstract: The role and function of a given protein is dependent on its structure. In recent years, h...
Not all proteins form well defined three-dimensional structures in their native states. Some amino-a...
AbstractThe new predictor of disordered protein regions (disEMBL) introduced in this issue of Struct...
Protein disordered regions are segments of a protein chain that do not adopt a stable structure. Th...
International audienceIn the last 2 decades it has become increasingly evident that a large number o...
AbstractThe recent advances in the prediction of intrinsically disordered proteins and the use of pr...
AbstractObjectivesA number of published predictors are based on various algorithms and disordered pr...
AbstractA bioinformatics analysis of disorder content of proteins from the DisProt database has been...
International audienceIntrinsically-disordered protein (IDP) characterization was an amazing change ...
Motivation: Intrinsically disordered regions in proteins have no unique stable structures without th...
The role and function of a given protein is dependent on its structure. In recent years, however, nu...
Disordered regions, i.e., regions of proteins that do not adopt a stable three-dimensional structure...
AbstractA great challenge in the proteomics and structural genomics era is to predict protein struct...
A great challenge in the proteomics and structural genomics era is to predict protein structure and ...
The role and function of a given protein is dependent on its structure. In recent years, however, n...
Abstract: The role and function of a given protein is dependent on its structure. In recent years, h...
Not all proteins form well defined three-dimensional structures in their native states. Some amino-a...
AbstractThe new predictor of disordered protein regions (disEMBL) introduced in this issue of Struct...
Protein disordered regions are segments of a protein chain that do not adopt a stable structure. Th...
International audienceIn the last 2 decades it has become increasingly evident that a large number o...
AbstractThe recent advances in the prediction of intrinsically disordered proteins and the use of pr...
AbstractObjectivesA number of published predictors are based on various algorithms and disordered pr...
AbstractA bioinformatics analysis of disorder content of proteins from the DisProt database has been...
International audienceIntrinsically-disordered protein (IDP) characterization was an amazing change ...
Motivation: Intrinsically disordered regions in proteins have no unique stable structures without th...
The role and function of a given protein is dependent on its structure. In recent years, however, nu...
Disordered regions, i.e., regions of proteins that do not adopt a stable three-dimensional structure...