Motivation: The rapid drop in sequencing costs has produced many more (predicted) protein sequences than can feasibly be functionally annotated with wet-lab experiments. Thus, many computational methods have been developed for this purpose. Most of these methods employ homology-based inference, approximated via sequence alignments, to transfer functional annotations between proteins. The increase in the number of available sequences, however, has drastically increased the search space, thus significantly slowing down alignment methods. Results: Here we describe homology-derived functional similarity of proteins (HFSP), a novel computational method that uses results of a high-speed alignment algorithm, MMseqs2, to infer functional similarity...
Background Protein sequence similarities to any types of non-globular segments (coiled coils, low c...
A major goal of molecular biology is to understand functions of all genes in nature. Accordingly, it...
With many genomes now sequenced, computational annotation methods to characterize genes and proteins...
Motivation: The rapid drop in sequencing costs has produced many more (predicted) protein sequences ...
Abstract Background The increasing number of sequenced genomes provides the basis for exploring the ...
Protein functional annotation relies on the identification of accurate relationships, sequence diver...
Protein sequence annotation is a major challenge in the post-genomic era. The number of uncharacteri...
Protein sequence annotation is a major challenge in the post-genomic era. The number of uncharacteri...
Metagenome sequencing efforts have provided a large pool of billions of genes for identifying enzyme...
To exploit the vast amount of sequence information provided by the Genomic revolution, the biologica...
Because of the extreme impact of genome sequencing projects, protein sequences without accompanying ...
Background: Protein function is often dependent on subsets of solvent-exposed residues that may exis...
The number of available protein sequences in public databases is increasing exponentially. However, ...
BACKGROUND: The functional annotation of proteins relies on published information concerning their c...
Background: Annotating protein function is a major goal in molecular biology, yet experimentally det...
Background Protein sequence similarities to any types of non-globular segments (coiled coils, low c...
A major goal of molecular biology is to understand functions of all genes in nature. Accordingly, it...
With many genomes now sequenced, computational annotation methods to characterize genes and proteins...
Motivation: The rapid drop in sequencing costs has produced many more (predicted) protein sequences ...
Abstract Background The increasing number of sequenced genomes provides the basis for exploring the ...
Protein functional annotation relies on the identification of accurate relationships, sequence diver...
Protein sequence annotation is a major challenge in the post-genomic era. The number of uncharacteri...
Protein sequence annotation is a major challenge in the post-genomic era. The number of uncharacteri...
Metagenome sequencing efforts have provided a large pool of billions of genes for identifying enzyme...
To exploit the vast amount of sequence information provided by the Genomic revolution, the biologica...
Because of the extreme impact of genome sequencing projects, protein sequences without accompanying ...
Background: Protein function is often dependent on subsets of solvent-exposed residues that may exis...
The number of available protein sequences in public databases is increasing exponentially. However, ...
BACKGROUND: The functional annotation of proteins relies on published information concerning their c...
Background: Annotating protein function is a major goal in molecular biology, yet experimentally det...
Background Protein sequence similarities to any types of non-globular segments (coiled coils, low c...
A major goal of molecular biology is to understand functions of all genes in nature. Accordingly, it...
With many genomes now sequenced, computational annotation methods to characterize genes and proteins...