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Journal of the Royal Society, Interface|July 13, 2012
New insights into ice growth and melting modifications by antifreeze proteinsMaya Bar-Dolev, Yeliz Celik, J S Wettlaufer, et al.Biochemistry|April 24, 2002
Structure and dynamics of a beta-helical antifreeze proteinMargaret E Daley, Leo Spyracopoulos, Zongchao Jia, et al.The Journal of Biological Chemistry|December 26, 2024
Human calpain-3 and its structural plasticity: Dissociation of a homohexamer into dimers on binding titinQilu Ye, Amy Henrickson, Borries Demeler, et al.Cryobiology|April 5, 2011
Expression and characterization of an antifreeze protein from the perennial rye grass, Lolium perenneKyle J Lauersen, Alan Brown, Adam Middleton, et al.Biochimica Et Biophysica Acta. Molecular Cell Research|November 7, 2017
An easy-to-use FRET protein substrate to detect calpain cleavage in vitro and in vivoChristian-Scott E McCartney, James A MacLeod, Peter A Greer, et al.Biochimica Et Biophysica Acta|June 27, 2009
Profiling of calpain activity with a series of FRET-based substratesJacqueline C Kelly, Dominic Cuerrier, Laurie A Graham, et al.Biochemical and Biophysical Research Communications|January 1, 2003
Purification of antifreeze proteins by adsorption to iceMichael J Kuiper, Christopher Lankin, Sherry Y Gauthier, et al.The FEBS Journal|May 22, 2014
Crystal structure of calpain-3 penta-EF-hand (PEF) domain - a homodimerized PEF family member with calcium bound at the fifth EF-handSarathy K Partha, Ravikiran Ravulapalli, John S Allingham, et al.Science (New York, N.Y.)|February 18, 2014
An antifreeze protein folds with an interior network of more than 400 semi-clathrate watersTianjun Sun, Feng-Hsu Lin, Robert L Campbell, et al.Trends in Microbiology|January 20, 2019
RTX Adhesins are Key Bacterial Surface Megaproteins in the Formation of BiofilmsShuaiqi Guo, Tyler D R Vance, Corey A Stevens, et al.Pageof 19