1997
DOI: 10.1128/jb.179.3.697-704.1997
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Purification of peptide synthetases involved in pristinamycin I biosynthesis

Abstract: Several assays of pristinamycin I synthetases based on adenylate or thioester formation were developed. Purification to near homogeneity of these enzymatic activities from cell extracts of Streptomyces pristinaespiralis showed that three enzymes could activate all pristinamycin I precursors. SnbA, a 3-hydroxypicolinic acid: AMP ligase activating the first pristinamycin I residue, was purified 200-fold, using an ATP-pyrophosphate exchange assay. This enzyme was shown to be a monomer with an M r of 67,000 as est… Show more

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Cited by 38 publications
(40 citation statements)
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“…PyrA (543 aa), upstream of the NRPS/PKS/NRPS locus, is a probable 3-HPA:AMP ligase because it is similar to SnbA involved in pristinamycin I biosynthesis by S. pristinaespiralis (68% identity) and VisB involved in virginamycin S biosynthesis by S. virginiae (65% identity) (14,26). Presumably, 3-HPA is activated by PyrA and incorporated into the pyridomycin assembly line (Fig.…”
Section: Unknown or Tentative Role In Pyridomycin Biosynthesis-mentioning
confidence: 99%
“…PyrA (543 aa), upstream of the NRPS/PKS/NRPS locus, is a probable 3-HPA:AMP ligase because it is similar to SnbA involved in pristinamycin I biosynthesis by S. pristinaespiralis (68% identity) and VisB involved in virginamycin S biosynthesis by S. virginiae (65% identity) (14,26). Presumably, 3-HPA is activated by PyrA and incorporated into the pyridomycin assembly line (Fig.…”
Section: Unknown or Tentative Role In Pyridomycin Biosynthesis-mentioning
confidence: 99%
“…Residue 331 (GrsA numbering) was considered to be a coding residue by Stachelhaus et al (38) but not by Challis et al (5). The predicted coding residues of three other L-threonine-activating A domains are from SyrB, a syringomycin synthetase from Pseudomonas syringae (15); AcmB, an actinomycin synthetase from Streptomyces chrysomallus (34); and SnbC, a pristinamycin synthetase from Streptomyces pristinaespiralis (42). Threonine activation was demonstrated by ATP-PP i exchange for SnbC and SyrB.…”
Section: Structural Modeling Of the Pvdd Substrate-binding Pocketmentioning
confidence: 99%
“…The structural dissimilarity of the type A and type B streptogramins, however, implies that they are biosynthesized by quite different catalytic machinery. Indeed analysis of the genes that direct production of the pristinamycin type I and type II components indicates that they are biosynthesized by nonribosomal peptide and predominantly polyketide pathways, respectively (30)(31)(32)(33). It is therefore hard to imagine how the pathways to the type I and type II metabolites could have evolved from a common origin.…”
mentioning
confidence: 99%
“…2)] are assembled through a mixed polyketide͞nonribosomal peptide pathway, whereas the type B streptogramins [e.g., pristinamycin IA (5) (Fig. 2) (R ϭ NMe 2 ) and virginiamycin S 1 (6) (R ϭ H)] are nonribosomally synthesized depsipeptides that contain several unusual nonproteinogenic amino acids (26)(27)(28)(29)(30)(31)(32)(33). 4 is coproduced with 5 by Streptomyces pristinaespiralis NRRL 2958 and with 6 by Streptomyces virginiae (34).…”
mentioning
confidence: 99%