Cloning and analysis of structural genes from Streptomyces pristinaespiralis encoding enzymes involved in the conversion of pristinamycin IIB to pristinamycin IIA (PIIA): PIIA synthase and NADH:riboflavin 5'-phosphate oxidoreductase

Author:

Blanc V1,Lagneaux D1,Didier P1,Gil P1,Lacroix P1,Crouzet J1

Affiliation:

1. Unité de Biologie Moléculaire, Centre de Recherche de Vitry-Alfortville, Rhône-Poulenc Rorer S.A., Vitry-sur-Seine, France.

Abstract

In Streptomyces pristinaespiralis, two enzymes are necessary for conversion of pristinamycin IIB (PIIB) to pristinamycin IIA (PIIA), the major component of pristinamycin (D. Thibaut, N. Ratet, D. Bisch, D. Faucher, L. Debussche, and F. Blanche, J. Bacteriol. 177:5199-5205, 1995); these enzymes are PIIA synthase, a heterodimer composed of the SnaA and SnaB proteins, which catalyzes the oxidation of PIIB to PIIA, and the NADH:riboflavin 5'-phosphate oxidoreductase (hereafter called FMN reductase), the SnaC protein, which provides the reduced form of flavin mononucleotide for the reaction. By using oligonucleotide probes designed from limited peptide sequence information of the purified proteins, the corresponding genes were cloned from a genomic library of S. pristinaespiralis. SnaA and SnaB showed no significant similarity with proteins from databases, but SnaA and SnaB had similar protein domains. Disruption of the snaA gene in S. pristinaespiralis led to accumulation of PIIB. Complementation of a S. pristinaespiralis PIIA-PIIB+ mutant with the snaA and snaB genes, cloned in a low-copy-number plasmid, partially restored production of PIIA. The deduced amino acid sequence of the snaC gene showed no similarity to the sequences of other FMN reductases but was 39% identical with the product of the actVB gene of the actinorhodin cluster of Streptomyces coelicolor A(3)2, likely to be involved in the dimerization step of actinorhodin biosynthesis. Furthermore, an S. coelicolor A(3)2 mutant blocked in this step was successfully complemented by the snaC gene, restoring the production of actinorhodin.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference62 articles.

1. The haemoglobin-like protein (HMP) of Escherichia coli has ferrisiderophore reductase activity and its C-terminal domain shares homology with ferredoxin NADP~ reductases;Andrews S. C.;FEBS Lett.,1992

2. Aumercier M. S. Bouhallab M. L. Capmau and F. Le Goffic. 1992. RP 59500: a proposal mechanism for its bactericidal activity. J. Antimicrob. Chemother. 30(Suppl. A):9-14.

3. Bamas-Jacques N. S. Lorenzon P. Lacroix and J. Crouzet. 1994. Resolution of the S. pristinaespiralis chromosome by pulse-field electrophoresis and mapping of the genes involved in the pristinamycins I and II biosynthetic pathways abstr. P1-12 p. 98. In Abstracts of the 9th International Symposium on Biology of Actinomycetes.

4. Characterization of an insertion sequence (IS891) of novel structure from the cyanobacterium Anabaena sp. strain M-131;Bancroft I.;J. Bacteriol.,1989

5. Biosynthesis of anthraquinones by interspecies cloning of actinorhodin biosynthesis genes in Streptomycetes: clarification of actinorhodin gene functions;Bartel P. L.;J. Bacteriol.,1990

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