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Journal of Bacteriology|March 1, 1981
Subcellular compartmentation in control of converging pathways for proline and arginine metabolism in Saccharomyces cerevisiaeM C Brandriss, B MagasanikMolecular and Cellular Biology|December 1, 1987
Proline utilization in Saccharomyces cerevisiae: sequence, regulation, and mitochondrial localization of the PUT1 gene productS S Wang, M C BrandrissMolecular and Cellular Biology|January 11, 2000
The regulator of the yeast proline utilization pathway is differentially phosphorylated in response to the quality of the nitrogen sourceH L Huang, M C BrandrissJournal of Bacteriology|December 1, 1987
Gene-enzyme relationships in the proline biosynthetic pathway of Saccharomyces cerevisiaeD M Tomenchok, M C BrandrissMolecular and Cellular Biology|December 1, 1984
Primary structure of the nuclear PUT2 gene involved in the mitochondrial pathway for proline utilization in Saccharomyces cerevisiaeK A Krzywicki, M C BrandrissJournal of Bacteriology|December 1, 1971
Recognition of an Escherichia operator by a Salmonella repressorM C Brandriss, J M CalvoNature|October 13, 1988
The product of the Drosophila gene vasa is very similar to eukaryotic initiation factor-4AP F Lasko, M AshburnerGenes & Development|June 1, 1990
Posterior localization of vasa protein correlates with, but is not sufficient for, pole cell developmentP F Lasko, M AshburnerMolecular and Cellular Biology|November 1, 1989
Isolation of constitutive mutations affecting the proline utilization pathway in Saccharomyces cerevisiae and molecular analysis of the PUT3 transcriptional activatorJ E Marczak, M C BrandrissJournal of Bacteriology|June 1, 1992
Proline biosynthesis in Saccharomyces cerevisiae: analysis of the PRO3 gene, which encodes delta 1-pyrroline-5-carboxylate reductaseM C Brandriss, D A FalveyPageof 5