Organofluorine compounds are rare in Nature, with only a handful known to be produced by some species of plant and two microorganisms. Consequently, the mechanism of enzymatic carbon-fluorine bond formation is poorly understood. The bacterium Streptomyces cattleya biosynthesises fluoroacetate and 4-fluorothreonine as secondary metabolites and is a convenient system to study the biosynthesis and enzymology of fluorometabolite production. Using stable-isotope labelled precursors it has been shown that there is a common intermediate in the biosynthesis of the fluorometabolites, which has recently been identified as fluoroacetaldehyde. Studies with cell-free extracts of S. cattleya have identified two enzymes, an aldehyde dehydrogenase and a th...
In this paper, we report that fluoride ion is converted to the amino acid/antibiotic 4-fluorothreoni...
Fluorination has become a very useful tool in the design and optimization of bioactive small molecul...
SIGLEAvailable from British Library Document Supply Centre- DSC:DXN002110 / BLDSC - British Library ...
Organofluorine compounds are rare in Nature, with only a handful known to be produced by some specie...
Enzymatic fluorination of natural products is extremely rare. Of the 4000 halogenated natural produc...
Nature has evolved the ability to form a C-F bond, as exemplified by the bacterium Streptomyces catt...
Nature has hardly evolved a biochemistry of fluorine although there is a low-level occurrence of flu...
Fluoroacetaldehyde is converted to fluoroacetate and 4-fluorothreonine in Streptomyces cattleya indi...
A series of isotope labelling experiments was carried out to investigate the biosynthesis of fluoroa...
Streptomyces cattleya DSM 46488 is unusual in its ability to biosynthesise fluorine containing natur...
This review outlines the recent developments in uncovering the enzymes and intermediates involved in...
Enzymatic halogenation occurs during the biosynthesis of more than 4,000 natural products. The pres...
To date, only five fluorinated natural products have been identified. These were isolated from both...
Streptomyces cattleya is unusual in that it produces fluoroacetate and 4-fluorothreonine as secondar...
SummaryA genomic library of Streptomyces cattleya was screened to isolate a gene cluster encoding en...
In this paper, we report that fluoride ion is converted to the amino acid/antibiotic 4-fluorothreoni...
Fluorination has become a very useful tool in the design and optimization of bioactive small molecul...
SIGLEAvailable from British Library Document Supply Centre- DSC:DXN002110 / BLDSC - British Library ...
Organofluorine compounds are rare in Nature, with only a handful known to be produced by some specie...
Enzymatic fluorination of natural products is extremely rare. Of the 4000 halogenated natural produc...
Nature has evolved the ability to form a C-F bond, as exemplified by the bacterium Streptomyces catt...
Nature has hardly evolved a biochemistry of fluorine although there is a low-level occurrence of flu...
Fluoroacetaldehyde is converted to fluoroacetate and 4-fluorothreonine in Streptomyces cattleya indi...
A series of isotope labelling experiments was carried out to investigate the biosynthesis of fluoroa...
Streptomyces cattleya DSM 46488 is unusual in its ability to biosynthesise fluorine containing natur...
This review outlines the recent developments in uncovering the enzymes and intermediates involved in...
Enzymatic halogenation occurs during the biosynthesis of more than 4,000 natural products. The pres...
To date, only five fluorinated natural products have been identified. These were isolated from both...
Streptomyces cattleya is unusual in that it produces fluoroacetate and 4-fluorothreonine as secondar...
SummaryA genomic library of Streptomyces cattleya was screened to isolate a gene cluster encoding en...
In this paper, we report that fluoride ion is converted to the amino acid/antibiotic 4-fluorothreoni...
Fluorination has become a very useful tool in the design and optimization of bioactive small molecul...
SIGLEAvailable from British Library Document Supply Centre- DSC:DXN002110 / BLDSC - British Library ...