Search PubMed⌕ Search

Biomedical subjects

Robert A Edwards

Publications and source records attributed to Robert A Edwards.

20 records · Page 2Linked to original sources

The light-induced reactions of tryptophan with halocompounds.

The light-dependent reaction between N-acetyl-L-tryptophanamide (NATA) and chloroform has been examined using fluorescence, NMR and reverse phase chromatography. The emission of NATA in the presence of CHCl3 decreases at 360 nm and increases at longer wavelengths (approximately 480 nm) upon illumination with 280 nm light. The action spectrum for the formation of the 480 nm emitting product(s) has the same shape as the excitation spectra of the indole fluorophore in NATA. The pH of the solution decreases as the reaction proceeds. The reaction rate depends on the intensity of the illumination and is of the first order with respect to both [NATA] and [CHCl3]. NMR and reverse phase chromatography results demonstrate that multiple products are formed. The reaction products give new peaks between 8.9 and 10.5 ppm in the 1H-NMR that are assigned to -CHO groups, which are added to the indole ring. Some of the products react with 2,4-dinitrophenylhydrazine and thus confirm this assignment. A scheme is proposed in which the excited indole gives off a solvated electron to initiate a series of steps that yield indole derivatives in which a -CHO group has replaced a -H in the indole ring. Similar reactions are observed when 5-hydroxytryptophan, 5-fluorotryptophan or N-methylindolacetate is used instead of tryptophan or when the chloroform is replaced with other trichlorinated compounds, such as trichloroacetic acid, trichloroethanol and trichloroethane, as well as the tribrominated compound, bromoform, and the monoiodinated compound, iodoactetate.

Indoles↗

Genomic analysis and growth-phase-dependent regulation of the SEF14 fimbriae of Salmonella enterica serovar Enteritidis.

Salmonella enterica serovar Enteritidis is a leading cause of food poisoning in the USA and Europe. Although Salmonella serovars share many fimbrial operons, a few fimbriae are limited to specific Samonella serovars. SEF14 fimbriae are restricted to group D Salmonella and the genes encoding this virulence factor were acquired relatively recently. Genomic, genetic and gene expression studies have been integrated to investigate the ancestry, regulation and expression of the sef genes. Genomic comparisons of the Salmonella serovars sequenced revealed that the sef operon is inserted in leuX in Salmonella Enteritidis, Salmonella Paratyphi and Salmonella Typhi, and revealed the presence of a previously unidentified 25 kb pathogenicity island in Salmonella Typhimurium at this location. Salmonella Enteritidis contains a region of homology between the Salmonella virulence plasmid and the chromosome downstream of the sef operon. The sef operon itself consists of four co-transcribed genes, sefABCD, and adjacent to sefD there is an AraC-like transcriptional activator that is required for expression of the sef genes. Expression of the sef genes was optimal during growth in late exponential phase and was repressed during stationary phase. The regulation was coordinated by the RpoS sigma factor.

Amino Acid Sequence↗