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1 s were all produced by the same nonribosomal peptide synthase.
2  to fatty acid, polyketide, and nonribosomal peptide synthases.
3  of a new structural family of non-ribosomal peptide synthases.
4  in DNA repair and possibly replication, and peptide synthase 1; Saccharomyces cerevisiae Pab1p-depen
5     This strategy showed that a nonribosomal peptide synthase, encoded by mps1, contains three amino
6 gene clusters, with one of the non-ribosomal peptide synthases encoding dimethylcoprogen, a conserved
7 to mycobacteria, the polyketide/nonribosomal peptide synthase family, and mycolic and fatty acid bios
8 cin, including merP encoding a non-ribosomal peptide synthase for pipecolate-incorporation, four PKS
9 polyketide synthase type II or non-ribosomal peptide synthase genes within their genome.
10 hore biosynthesis genes: NRPS (non-ribosomal peptide synthase) genes and NIS (NRPS Independent Sidero
11 erentially expressed genes were nonribosomal peptide synthases (NRPS) and/or polyketide synthases (PK
12 mber of modular polyketide and non-ribosomal peptide synthases (NRPS).
13 ses involved in polyketide and non-ribosomal peptide synthase synthases.
14  has been demonstrated in some non-ribosomal peptide synthase systems.
15 es an unusual hybrid polyketide/nonribosomal peptide synthase that has been linked to the production