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FEBS Letters|June 21, 1993
Beta-crystallins insolubilized by calpain II in vitro contain cleavage sites similar to beta-crystallins insolubilized during cataractL L David, T R ShearerInvestigative Ophthalmology & Visual Science|November 1, 1984
Calcium-activated proteolysis in the lens nucleus during selenite cataractogenesisL L David, T R ShearerExperimental Eye Research|April 1, 1985
Histologic changes during selenite cataractogenesis: a light microscopy studyT R Shearer, R S AndersonJournal of Dental Research|August 1, 1979
Selenium uptake into teeth determined by fluorimetryJ R Johnson, T R ShearerToxicology and Applied Pharmacology|June 15, 1984
State of sulfhydryl in selenite cataractL L David, T R ShearerLens and Eye Toxicity Research|January 1, 1989
Role of proteolysis in lenses: a reviewL L David, T R ShearerFEBS Letters|November 29, 2005
Degradation of human aquaporin 0 by m-calpainH Ma, M Azuma, T R ShearerCurrent Eye Research|July 1, 1991
Cysteine protease inhibitor E64 reduces the rate of formation of selenite cataract in the whole animalM Azuma, L L David, T R ShearerThe Journal of Biological Chemistry|January 25, 1993
Sequence analysis of lens beta-crystallins suggests involvement of calpain in cataract formationL L David, T R Shearer, M ShihPageof 11