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Genetic Analysis of Serine Biosynthesis and Glucose Repression in Yeast by Karsten Melcher; Karl-Dieter Entian is a Biochemistry, Genetics and Molecular Biology article available to read on EtoBox.
What is Genetic Analysis of Serine Biosynthesis and Glucose Repression in Yeast about?
Serine and glycine biosynthesis in yeast proceed by two pathways; a "glycolytic" pathway, using 3-phosphoglycerate, and a "gluconeogenic" pathway, using glyoxylate. We used a mutation in the cat1 gene to abolish the glucose-repressible "gluconeogenic" pathway and re-isolated two mutants, serl and ser2, in the "glycolytic" pathway. The set1 mutation corresponded to phosphoserine transaminase and ser2 to that of phosphoserine phosphatase. Mutagenesis of a serl set2 cat1 triple mutant facilitated the isolation of a mutation in a new gene, SERIO. SERIO appears to be part of a pathway which, under normal growth conditions, is less important in serine biosynthesis. The set1 set2 serlO triple mutants were totally serine auxotrophic on glucose media but serine prototrophic during growth on non-fermentable carbon sources. This phenotype was used to select for possible regulatory mutants that synthesize serine by the gluconeogenic pathway even in the presence of glucose, e.g., with a non-glucose repressible glyoxylate cycle. In an alternative approach to isolate such mutants URA3 and TRP1 expression were placed under the control of the glucose-repressible FBP1 (fructose-l,6-bisphosphatase) p
Who reads Genetic Analysis of Serine Biosynthesis and Glucose Repression in Yeast?
It is typically read by researchers, students, and practitioners in Biochemistry, Genetics and Molecular Biology.
- Author
- Karsten Melcher; Karl-Dieter Entian
- Publisher
- Springer-Verlag; Springer Verlag; Springer Science and Business Media LLC (ISSN 0172-8083)
- Published
- 1992
- Language
- EN
- Field
- Biochemistry, Genetics and Molecular Biology (Life Sciences)