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Biochemical and Biophysical Research Communications|August 30, 1984
Membrane protein carboxyl methylation does not appear to be involved in the response of erythrocytes to cytoskeletal stressJ R Barber, S ClarkeBiochemistry|October 26, 1993
Purification and characterization of a novel metalloendopeptidase from Saccharomyces cerevisiaeC A Hrycyna, S ClarkeThe Journal of Biological Chemistry|September 5, 1986
Chemical conversion of aspartyl peptides to isoaspartyl peptides. A method for generating new methyl-accepting substrates for the erythrocyte D-aspartyl/L-isoaspartyl protein methyltransferaseP N McFadden, S ClarkeBiochemical and Biophysical Research Communications|November 15, 1985
Specific recognition of altered polypeptides by widely distributed methyltransferasesC M O'Connor, S ClarkeJournal of the American Veterinary Medical Association|July 21, 2012
Total scapulectomy for the treatment of chondrosarcoma in a catBen S Clarke, Laurent FindjiMolecular and Cellular Biology|October 1, 1990
Farnesyl cysteine C-terminal methyltransferase activity is dependent upon the STE14 gene product in Saccharomyces cerevisiaeC A Hrycyna, S ClarkeThe Journal of Comparative Neurology|September 1, 1986
Organization of immature intrahemispheric connectionsS Clarke, G M InnocentiThe Biochemical Journal|June 15, 1986
Methylation of calmodulin at carboxylic acid residues in erythrocytes. A non-regulatory covalent modification?L S Brunauer, S ClarkeThe Journal of Biological Chemistry|October 10, 1979
Membrane receptors for aspartate and serine in bacterial chemotaxisS Clarke, D E KoshlandMedicine and Science in Sports|January 1, 1978
Football fatalities in actuarial perspectiveK S Clarke, A BraslowPageof 86