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The Journal of Biological Chemistry|April 25, 1997
Size of human lens beta-crystallin aggregates are distinguished by N-terminal truncation of betaB1M S Ajaz, Z Ma, D L Smith, et al.Journal of Dairy Science|March 19, 2013
Short communication: comparison of the effects of heat stress on milk and component yields and somatic cell score in Holstein and Jersey cowsD L Smith, T Smith, B J Rude, et al.Zentralblatt Fur Bakteriologie : International Journal of Medical Microbiology|May 1, 1989
Evaluation of the Phadebact ETEC-LT test for the heat-labile enterotoxin of Escherichia coliK A Bettelheim, N Hanna, D L Smith, et al.Plant Cell Reports|November 20, 2013
Stimulation of direct embryogenesis from mesophyll protoplasts of Medicago sativaM Dijak, D L Smith, T J Wilson, et al.International Journal of Hyperthermia : the Official Journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group|October 1, 1985
Field penetration of arrays of compact applicators in localized hyperthermiaR H Johnson, G Andrasic, D L Smith, et al.The Journal of Biological Chemistry|February 25, 1987
Assignment of disulfide bonds in proteins by fast atom bombardment mass spectrometryR Yazdanparast, P C Andrews, D L Smith, et al.Experimental Eye Research|July 12, 2001
Resistance of human betaB2-crystallin to in vivo modificationZ Zhang, L L David, D L Smith, et al.Experimental Eye Research|August 10, 2000
The major in vivo modifications of the human water-insoluble lens crystallins are disulfide bonds, deamidation, methionine oxidation and backbone cleavageS R Hanson, A Hasan, D L Smith, et al.Experimental Eye Research|January 1, 1992
Mass spectrometric analysis of the structure of gamma II bovine lens crystallinW Qin, J B Smith, D L Smith, et al.Biochemistry|October 3, 1989
2.8-A-resolution crystal structure of an active-site mutant of aspartate aminotransferase from Escherichia coliD L Smith, S C Almo, M D Toney, et al.Pageof 48