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The Journal of Biological Chemistry|April 25, 1984
Interaction of Mg2+ with human liver aldehyde dehydrogenase. I. Species difference in the mitochondrial isozymeR C Vallari, R PietruszkoScience (New York, N.Y.)|May 7, 1982
Human aldehyde dehydrogenase: mechanism of inhibition of disulfiramR C Vallari, R PietruszkoThe Journal of Biological Chemistry|April 25, 1984
Interaction of Mg2+ with human liver aldehyde dehydrogenase. II. Mechanism and site of interactionR C Vallari, R PietruszkoPharmacology, Biochemistry, and Behavior|January 1, 1983
Interaction of human cytoplasmic aldehyde dehydrogenase E1 with disulfiramR C Vallari, R PietruszkoFEBS Letters|January 1, 1985
Human mitochondrial aldehyde dehydrogenase inhibition by diethyldithiocarbamic acid methanethiol mixed disulfide: a derivative of disulfiramA D MacKerell, R C Vallari, R PietruszkoAdvances in Experimental Medicine and Biology|January 1, 1980
On the interaction of human liver aldehyde dehydrogenase E1 isoenzyme with disulfiram and iodoacetamideJ D Hempel, R C Vallari, R PietruszkoAlcoholism, Clinical and Experimental Research|January 1, 1981
Brain aldehyde dehydrogenase in human alcoholics and controlsR Pietruszko, D M Reed, R C Vallari, et al.Genetics|December 1, 1994
The yeast CCR4 protein is neither regulated by nor associated with the SPT6 and SPT10 proteins and forms a functionally distinct complex from that of the SNF/SWI transcription factorsC L Denis, M P Draper, H Y Liu, et al.Molecular and Cellular Biology|April 1, 1992
Glucose repression of the yeast ADH2 gene occurs through multiple mechanisms, including control of the protein synthesis of its transcriptional activator, ADR1R C Vallari, W J Cook, D C Audino, et al.Pageof 1