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Infection and Immunity|July 1, 1987
Biological and biochemical characterization of tunicamycin-resistant Leishmania mexicana: mechanism of drug resistance and virulenceJ A Kink, K P ChangInfection and Immunity|May 9, 1998
Antibodies to recombinant Clostridium difficile toxins A and B are an effective treatment and prevent relapse of C. difficile-associated disease in a hamster model of infectionJ A Kink, J A WilliamsProceedings of the National Academy of Sciences of the United States of America|March 1, 1987
Tunicamycin-resistant Leishmania mexicana amazonensis: expression of virulence associated with an increased activity of N-acetylglucosaminyltransferase and amplification of its presumptive geneJ A Kink, K P ChangMolecular and Biochemical Parasitology|January 15, 1988
N-glycosylation as a biochemical basis for virulence in Leishmania mexicana amazonensisJ A Kink, K P ChangThe Journal of Biological Chemistry|March 5, 1988
DNA amplification in tunicamycin-resistant Leishmania mexicana. Multicopies of a single 63-kilobase supercoiled molecule and their expressionS Detke, G Chaudhuri, J A Kink, et al.Digestive Diseases and Sciences|March 22, 2001
Oral administration of avian tumor necrosis factor antibodies effectively treats experimental colitis in ratsK L Worledge, R Godiska, T A Barrett, et al.Cancer Chemotherapy and Pharmacology|August 18, 2009
The polyamine analog PG11047 potentiates the antitumor activity of cisplatin and bevacizumab in preclinical models of lung and prostate cancerK Dredge, J A Kink, R M Johnson, et al.The Journal of Protozoology|September 1, 1991
Efficient expression of the Paramecium calmodulin gene in Escherichia coli after four TAA-to-CAA changes through a series of polymerase chain reactionsJ A Kink, M E Maley, K Y Ling, et al.Molecular and Biochemical Parasitology|February 1, 1986
Expression and size heterogeneity of a 63 kilodalton membrane glycoprotein during growth and transformation of Leishmania mexicana amazonensisC S Chang, T J Inserra, J A Kink, et al.Proteins|April 1, 1992
Primary mutations in calmodulin prevent activation of the Ca(++)-dependent Na+ channel in ParameciumK Y Ling, R R Preston, R Burns, et al.Pageof 2