It is still very difficult to determine the function of a protein from its sequence. One potential solution to the problem combines the concept of enzyme superfamilies with modern methods of protein structure prediction. Active-site templates can be used as search tools to identify new members of the superfamilies
In the recent years, a rapidly increasing amount of experimental data has been generated by high-thr...
Studying the evolution of enzymes and their functions improves our ability to determine the function...
Summary. Protein function prediction, i.e. classification of protein sequences according to their bi...
It is still very difficult to determine the function of a protein from its sequence. One potential s...
The rapid growth of the number of protein sequences that can be inferred from sequenced genomes pres...
AbstractWith the exponential growth in the determination of protein sequences and structures via gen...
The various structural genomics projects throughout the globe have developed high-throughput protein...
Background: Structural genomics projects such as the Protein Structure Initiative (PSI) yield many n...
The study of proteins and their function is key to understanding how the cell works in normal and di...
Analysis of completed genomes from a number of organisms reveal that about half of all gene products...
The advance of high-throughput sequencing methodologies has led to an exponential increase of new pr...
The identification of novel drug targets from genomic data involves the large-scale analysis of many...
The explosion of DNA sequence data from genome projects presents many challenges. For instance, we m...
We address the problem of assigning biological function to solved protein structures. Computational ...
Structural genomics initiatives are beginning to rapidly generate vast numbers of protein structures...
In the recent years, a rapidly increasing amount of experimental data has been generated by high-thr...
Studying the evolution of enzymes and their functions improves our ability to determine the function...
Summary. Protein function prediction, i.e. classification of protein sequences according to their bi...
It is still very difficult to determine the function of a protein from its sequence. One potential s...
The rapid growth of the number of protein sequences that can be inferred from sequenced genomes pres...
AbstractWith the exponential growth in the determination of protein sequences and structures via gen...
The various structural genomics projects throughout the globe have developed high-throughput protein...
Background: Structural genomics projects such as the Protein Structure Initiative (PSI) yield many n...
The study of proteins and their function is key to understanding how the cell works in normal and di...
Analysis of completed genomes from a number of organisms reveal that about half of all gene products...
The advance of high-throughput sequencing methodologies has led to an exponential increase of new pr...
The identification of novel drug targets from genomic data involves the large-scale analysis of many...
The explosion of DNA sequence data from genome projects presents many challenges. For instance, we m...
We address the problem of assigning biological function to solved protein structures. Computational ...
Structural genomics initiatives are beginning to rapidly generate vast numbers of protein structures...
In the recent years, a rapidly increasing amount of experimental data has been generated by high-thr...
Studying the evolution of enzymes and their functions improves our ability to determine the function...
Summary. Protein function prediction, i.e. classification of protein sequences according to their bi...