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Genetics|April 1, 1979
Post-Translational Modification as a Potential Explanation of High Levels of Enzyme Polymorphism: Xanthine Dehydrogenase and Aldehyde Oxidase in DROSOPHILA MELANOGASTERV Finnerty, G JohnsonMolecular & General Genetics : MGG|January 1, 1981
Molybdenum hydroxylases in Drosophila. II. Molybdenum cofactor in xanthine dehydrogenase, aldehyde oxidase and pyridoxal oxidaseC K Warner, V FinnertyGenetics|August 1, 1981
Post-translation modification of xanthine dehydrogenase in a natural population of Drosophila melanogasterG Johnson, V Finnerty, D HartlMolecular & General Genetics : MGG|April 17, 1979
Gene expression in Drosophila: post-translational modification of aldehyde oxidase and xanthine dehydrogenaseV Finnerty, M McCarron, G B JohnsonParassitologia|May 1, 1988
Ribosomal DNA-probes differentiate five cryptic species in the Anopheles gambiae complexF H Collins, V Finnerty, V PetrarcaBiochemical Genetics|August 1, 1986
Molybdenum hydroxylases in Drosophila. III. Further characterization of the low xanthine dehydrogenase geneD R Schott, M C Baldwin, V FinnertyMolecular & General Genetics : MGG|July 8, 1999
The Drosophila cinnamon gene is functionally homologous to Arabidopsis cnx1 and has a similar expression pattern to the mammalian gephyrin geneA E Wittle, K P Kamdar, V FinnertyGenetics|July 1, 1994
The Drosophila molybdenum cofactor gene cinnamon is homologous to three Escherichia coli cofactor proteins and to the rat protein gephyrinK P Kamdar, M E Shelton, V FinnertyJournal of Virology|April 1, 1974
Fate of mRNA of L-cells infected with mengovirusD S Colby, V Finnerty, J Lucas-LenardThe Journal of Biological Chemistry|April 10, 1982
Drosophila melanogaster ma-l mutants are defective in the sulfuration of desulfo Mo hydroxylasesR C Wahl, C K Warner, V Finnerty, et al.Pageof 2