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BMC Molecular and Cell Biology|December 30, 2024
Convergent evolution of type I antifreeze proteins from four different progenitors in response to global coolingLaurie A Graham, Peter L DaviesFEBS Letters|December 2, 2022
Protein engineering of antifreeze proteins reveals that their activity scales with the area of the ice-binding siteConnor L Scholl, Peter L DaviesTrends in Genetics : TIG|March 14, 2021
Horizontal Gene Transfer in Vertebrates: A Fishy TaleLaurie A Graham, Peter L DaviesThe Biochemical Journal|October 6, 2012
Structure-function relationships in calpainsRobert L Campbell, Peter L DaviesScience (New York, N.Y.)|October 22, 2005
Glycine-rich antifreeze proteins from snow fleasLaurie A Graham, Peter L DaviesFEBS Letters|December 17, 2002
The protease core of the muscle-specific calpain, p94, undergoes Ca2+-dependent intramolecular autolysisMichelle A Rey, Peter L DaviesSystems Biology in Reproductive Medicine|September 5, 2018
Protein evolution revisitedPeter L Davies, Laurie A GrahamThe Journal of Biological Chemistry|October 12, 2005
Determination of peptide substrate specificity for mu-calpain by a peptide library-based approach: the importance of primed side interactionsDominic Cuerrier, Tudor Moldoveanu, Peter L DaviesMethods in Molecular Biology (Clifton, N.J.)|January 9, 2019
Bacterial Expression and Purification of CalpainsChristian-Scott E McCartney, Peter L DaviesMethods in Molecular Biology (Clifton, N.J.)|January 9, 2019
FRET-Based Assays to Determine Calpain ActivityChristian-Scott E McCartney, Peter L DaviesPageof 19