While several microorganisms readily degrade 2- and 4-fluorobenzoates, only a very small number appear to catabolise the 3-fluoro isomer, owing to the accumulation of toxic intermediates. Here we describe the isolation of a bacterium capable of using 3-fluorobenzoate as a
Journal of biochemistry, 105(2), 318-322 (1989-02-01)
The interactions of competitive inhibitors, o-, m-, and p-fluorobenzoates, with porcine kidney D-amino acid oxidase (DAO) were studied by 19F-NMR spectroscopy. The 19F-signals of DAO-bound fluorobenzoates were observed as considerably broadened peaks. The chemical shifts, which are referenced to 20
Journal of medicinal chemistry, 37(15), 2361-2370 (1994-07-22)
The synthesis of six novel fluorinated potential prodrugs for antibody-directed enzyme prodrug therapy is described. The [2- and 3-fluoro-4-[bis(2-chloroethyl)amino]benzoyl]-L-glutamic acid (9 and 21), their bis(mesyloxy)ethyl derivatives (7 and 19), and their chloroethyl (mesyloxy)-ethyl derivatives (8 and 20) are bifunctional alkylating
Metabolism of monofluoro- and monochlorobenzoates by a dentrifying bacterium.
B F Taylor et al.
Archives of microbiology, 122(3), 301-306 (1979-09-01)
Journal of biotechnology, 156(3), 163-172 (2011-09-13)
Pseudomonas putida KT2440-JD1 was derived from P. putida KT2440 after N-methyl-N'-nitro-N-nitrosoguanidine (NTG)-mutagenesis and exposure to 3-fluorobenzoate (3-FB). The mutant was no longer able to grow using benzoate as a sole carbon source, but co-metabolized benzoate to cis, cis-muconate during growth
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