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Joint Evolutionary Trees: A Large-Scale Method To Predict Protein Interfaces Based on Sequence Sampling.

, , , , and . PLoS Computational Biology, (2009)

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P-dcfold or How to Predict all Kinds of Pseudoknots in Rna Secondary Structures., , and . International Journal on Artificial Intelligence Tools, 14 (5): 703-716 (2005)A Fast Algorithm for NA Secondary Structure Prediction Including Pseudoknots., , and . BIBE, page 11-17. IEEE Computer Society, (2003)An Open Problem in RNA Secondary Structure Prediction by the Comparative Approach., and . METMBS, page 293-299. CSREA Press, (2004)MicroScope - an integrated microbial resource for the curation and comparative analysis of genomic and metabolic data., , , , , , , , , and 6 other author(s). Nucleic Acids Research, 41 (Database-Issue): 636-647 (2013)Joint Evolutionary Trees: A Large-Scale Method To Predict Protein Interfaces Based on Sequence Sampling., , , , and . PLoS Computational Biology, (2009)MicroScope: a platform for microbial genome annotation and comparative genomics., , , , , , , , , and 1 other author(s). Database, (2009)Predicting RNA secondary structure by the comparative approach: how to select the homologous sequences., and . BMC Bioinformatics, (2007)TE-Tracker: systematic identification of transposition events through whole-genome resequencing., , , , , , , , , and 4 other author(s). BMC Bioinformatics, (2014)Information Content of Sets of Biological Sequences Revisited., and . Algorithmic Bioprocesses, page 31-42. Springer, (2009)