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Proceedings of the National Academy of Sciences of the United States of America|February 1, 1986
Interaction of vanadate with phenol and tyrosine: implications for the effects of vanadate on systems regulated by tyrosine phosphorylationA S Tracey, M J Gresser
Biochemistry and Cell Biology = Biochimie Et Biologie Cellulaire|March 29, 2000
The phosphatase domains of LAR, CD45, and PTP1B: structural correlations with peptide-based inhibitorsN R Glover, A S Tracey
Magnetic Resonance in Medicine|August 1, 1986
Pulse techniques for the suppression of individual components in multiexponential relaxation curvesK R Metz, P J Stankiewicz, J W Sassani, et al.
Inorganic Chemistry|November 13, 2001
Vanadium(V) complexes of alpha-hydroxycarboxylic acids in aqueous solutionS Hati, R J Batchelor, F W Einstein, et al.
Biological Trace Element Research|August 1, 1991
The distribution and half-life for retention of vanadium in the organs of normal and diabetic rats orally fed vanadium(IV) and vanadium(V)S Ramanadham, C Heyliger, M J Gresser, et al.
Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|August 10, 1999
Vanadate inhibition of protein tyrosine phosphatases in Jurkat cells: modulation by redox stateC Cuncic, N Detich, D Ethier, et al.
The Journal of Biological Chemistry|February 9, 1996
Structural studies of a peptide activator of human lecithin-cholesterol acyltransferaseG W Buchko, W D Treleaven, S J Dunne, et al.
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