Studies on the biosynthesis of thiostrepton: 4-(1-hydroxyethyl)quinoline-2-carboxylate as a free intermediate on the pathway to the quinaldic acid moiety

Bioorganic & Medicinal Chemistry
1996.0

Abstract

Specifically 13C-labeled quinoline-2-carboxylate derivatives were synthesized from quinoline and used to study the biosynthesis of thiostrepton in a strain of Streptomyces laurentii. 13C NMR analysis of thiostrepton recovered after feeding methyl (RS)-[11-13C]-4-(1-hydroxyethyl)quinoline-2-carboxylate or methyl [11-13C]-4-acetylquinoline-2-carboxylate showed conclusively that these compounds are specifically and efficiently incorporated into thiostrepton. Both compounds were also detected in cultures of the producing organism by isotope dilution analysis. The significance of the relative endogenous concentrations of the two compounds and of the relative extent of the incorporation of exogenously added labeled material into thiostrepton are discussed in terms of the biosynthetic pathway linking tryptophan and 4-(1-hydroxyethyl)quinoline-2-carboxylate in S. laurentii. A highly specific enzyme activity was detected in cell-free extracts of S. laurentii that was capable of adenylating (12S)-4-(1-hydroxyethyl)quinoline-2-carboxylic acid. Partial purification of the enzyme was achieved. The enzyme was found to be specific for the enantiomer of the substrate which has the same absolute configuration as found in the natural antibiotic structure. The presence of one specific enzyme catalysing the adenylation process in S. laurentii was shown by photoaffinity labeling with [alpha-32P]-8-azido-ATP and subsequent SDS PAGE analysis of the labeled products. The native molecular weight of the active enzyme, determined by gel permeation chromatography, was found to be approximately 47 kDa, compared with a denatured weight of 50 kDa estimated for the photoaffinity-labeled protein. The enzyme is thus probably monomeric.

Knowledge Graph

Similar Paper

Studies on the biosynthesis of thiostrepton: 4-(1-hydroxyethyl)quinoline-2-carboxylate as a free intermediate on the pathway to the quinaldic acid moiety
Bioorganic & Medicinal Chemistry 1996.0
Formation of 2-methyltryptophan in the biosynthesis of thiostrepton: Isolation of S-adenosylmethionine: Tryptophan 2-methyltransferase
Archives of Biochemistry and Biophysics 1990.0
Biosynthesis of quinoxaline antibiotics: purification and characterization of the quinoxaline-2-carboxylic acid activating enzyme from Streptomyces triostinicus
Biochemistry 1990.0
Discovery and efficient synthesis of a biologically active alkaloid inspired by thiostrepton biosynthesis
Tetrahedron 2014.0
Thiostrepton Biosynthesis: Prototype for a New Family of Bacteriocins
Journal of the American Chemical Society 2009.0
Heterologous production of thiostrepton A and biosynthetic engineering of thiostrepton analogs
Mol. BioSyst. 2010.0
Biosynthesis of Aurachins A−L in <i>Stigmatella aurantiaca</i>: A Feeding Study
Journal of Natural Products 2008.0
Oxalic acid biosynthesis and oxalacetate acetylhydrolase activity in Streptomyces cattleya
Archives of Biochemistry and Biophysics 1987.0
Stereospecificity of the enzymic dehydrogenation in the biosynthesis of 3-ethylidene-L-azetidine-2-carboxylic acid from isoleucine by Streptomyces cacaoi
Biochemistry 1981.0
Biosynthesis of streptothricin F. Part 6. Formation and intermediacy of D-glucosamine in Streptomyces L-1689-23
Journal of the Chemical Society, Perkin Transactions 1 1988.0