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Journal of Animal Science|February 24, 2001
The calpain system in three muscles of normal and callipyge sheepE F Delgado, G H Geesink, J A Marchello, et al.The Journal of Cell Biology|March 1, 1993
Evidence that activation of platelet calpain is induced as a consequence of binding of adhesive ligand to the integrin, glycoprotein IIb-IIIaJ E Fox, R G Taylor, M Taffarel, et al.Biochimica Et Biophysica Acta|April 8, 1991
Comparison of the autolyzed and unautolyzed forms of mu- and m-calpain from bovine skeletal muscleT Edmunds, P A Nagainis, S K Sathe, et al.The Biochemical Journal|February 1, 1982
Degradation of myofibrillar proteins by trypsin-like serine proteinasesJ Kay, L M Siemankowski, R F Siemankowski, et al.Growth|September 1, 1976
Muscle growth in two genetically different lines of swineS A Harbison, D E Goll, F C Parrish, et al.Biochimica Et Biophysica Acta|October 28, 1976
Effect of trypsin on rabbit skeletal muscle alpha-actininG R Holmes, D E Goll, A Suzuki, et al.The Journal of Nutrition|January 1, 1983
Effect of starvation and refeeding on activity of a Ca2+-dependent protease in rat skeletal muscleB A Brooks, D E Goll, Y S Peng, et al.Acta Biologica Et Medica Germanica|January 1, 1981
Proteolysis of myofibrillar proteins at neutral pHJ Kay, R F Siemankowski, J A Greweling, et al.Experimental Cell Research|February 27, 1999
Microinjection of calpastatin inhibits fusion in myoblastsC J Temm-Grove, D Wert, V F Thompson, et al.The Journal of Cell Biology|July 1, 1976
A Ca2+-activated protease possibly involved in myofibrillar protein turnover. Subcellular localization of the protease in porcine skeletal muscleW J Reville, D E Goll, M H Stromer, et al.Pageof 6