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Tracking repeats using significance and transitivity., and . ISMB/ECCB (Supplement of Bioinformatics), page 311-317. (2004)BioASF: a framework for automatically generating executable pathway models specified in BioPAX., , , , , and . Bioinform., 32 (12): 60-69 (2016)ECCB 2016: The 15th European Conference on Computational Biology., , , and . Bioinform., 32 (17): 389-392 (2016)The ability of transcription factors to differentially regulate gene expression is a crucial component of the mechanism underlying inversion, a frequently observed genetic interaction pattern., , , , , , , and . PLoS Comput. Biol., (2019)Enabling grand-canonical Monte Carlo: Extending the flexibility of GROMACS through the GromPy python interface module., , , , , and . J. Comput. Chem., 33 (12): 1207-1214 (2012)The Evolution and Recognition of Protein Sequence Repeats.. Comput. Chem., 18 (3): 233-243 (1994)Sequence harmony: detecting functional specificity from alignments., , , and . Nucleic Acids Res., 35 (Web-Server-Issue): 495-498 (2007)Natalie 2.0: Sparse Global Network Alignment as a Special Case of Quadratic Assignment., , and . Algorithms, 8 (4): 1035-1051 (2015)To SCRY Linked Data: Extending SPARQL the Easy Way., , , , and . Diversity++@ISWC, volume 1501 of CEUR Workshop Proceedings, page 8-14. CEUR-WS.org, (2015)A Feature Selection Algorithm for Detecting Subtype Specific Functional Sites from Protein Sequences for Smad Receptor Binding., , , and . ICMLA, page 168-173. IEEE Computer Society, (2006)