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Sequential search leads to faster, more efficient fragment-based de novo protein structure prediction., , , and . Bioinformatics, 34 (7): 1132-1140 (2018)HOMSTRAD: adding sequence information to structure-based alignments of homologous protein families., , , , , , , and . Bioinformatics, 17 (8): 748-749 (2001)iMembrane: homology-based membrane-insertion of proteins., , and . Bioinformatics, 25 (8): 1086-1088 (2009)Crowdsourcing Yields a New Standard for Kinks in Protein Helices., , , , and . Journal of Chemical Information and Modeling, 54 (9): 2585-2593 (2014)Examining Variable Domain Orientations in Antigen Receptors Gives Insight into TCR-Like Antibody Design., , , , and . PLoS Computational Biology, (2014)Mobile computing - A green computing resource., , , and . WCNC, page 4451-4456. IEEE, (2013)Comparing co-evolution methods and their application to template-free protein structure prediction., , and . Bioinformatics, 33 (3): 373-381 (2017)DDBASE2.0: updated domain database with improved identification of structural domains., , , , , and . Bioinformatics, 19 (14): 1760-1764 (2003)Use of Network Latency Profiling and Redundancy for Cloud Server Selection., , , , , and . IEEE CLOUD, page 826-832. IEEE Computer Society, (2014)Co-evolutionary distance predictions contain flexibility information., , , , , and . Bioinform., 38 (1): 65-72 (2021)