10 results on '"Stec, Edyta"'
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2. The Structure of Dimethylallyl Tryptophan Synthase Reveals a Common Architecture of Aromatic Prenyltransferases in Fungi and Bacteria
3. Mutagenesis and biochemical studies on AuaA confirmed the importance of the two conserved aspartate-rich motifs and suggested difference in the amino acids for substrate binding in membrane-bound prenyltransferases
4. Production of diprenylated indole derivatives by tandem incubation of two recombinant dimethylallyltryptophan synthases
5. Molekularbiologische und biochemische Untersuchungen zu Prenyltransferasen aus Stigmatella aurantiaca und Aspergillus fumigatus
6. Site-directed Mutagenesis Switching a Dimethylallyl Tryptophan Synthase to a Specific Tyrosine C3-Prenylating Enzyme
7. Inside Cover: AuaA, a Membrane-Bound Farnesyltransferase from Stigmatella aurantiaca, Catalyzes the Prenylation of 2-Methyl-4-hydroxyquinoline in the Biosynthesis of Aurachins (ChemBioChem 11/2011)
8. AuaA, a Membrane‐Bound Farnesyltransferase from Stigmatella aurantiaca, Catalyzes the Prenylation of 2‐Methyl‐4‐hydroxyquinoline in the Biosynthesis of Aurachins
9. Two Lysine Residues are Responsible for the Enzymatic Activities of Indole Prenyltransferases from Fungi
10. Site-directed Mutagenesis Switching a Dimethylallyl Tryptophan Synthase to a Specific Tyrosine C³-Prenylating Enzyme.
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