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S J Talbot

Publications and source records attributed to S J Talbot.

5 recordsLinked to original sources

Hyperreactivity of adenines and conformational flexibility of a translational repression site.

We have used a diethylpyrocarbonate (DEPC) modification [(1976) Prog. Nucl. Acids Res. 16, 189-262] to probe the accessibility of adenines essential for coat protein binding in the MS2 translational operator [(1983) Biochemistry 22, 2601-2610, 2610-2615, 4723-4730; (1987) Biochemistry 26, 1563-1568]. The essential adenines are apparently hyperreactive with this reagent relative to other sites within the same molecule. Variation of ionic strength, pH and divalent cation concentrations reveal the existence of two distinct conformers of the RNA operator as judged by DEPC reactivity. We propose that the hyperreactivity observed is due to the participation of neighbouring bases in the DEPC modification reaction and can be used as a novel structural probe.

Adenine

Use of synthetic oligoribonucleotides to probe RNA-protein interactions in the MS2 translational operator complex.

Synthetic oligoribonucleotides have been used to probe the interaction of MS2 coat protein with the translational operator of the MS2 replicase gene. We have investigated the possible formation of a transient covalent bond between the single-stranded uridine residue, at position -5, and a cysteine side-chain on the coat protein, by the incorporation of a chemically modified residue (5-BrU) at this position. This chemically synthesised operator variant has a binding constant of between 10 and 50 times greater than that of the wild type and is therefore comparable with the tight binding variant having a cytidine substituted at the -5 position. Dissociation kinetics show that the complex with the 5-BrU operator is more stable than the -5C variant; a result which is consistent with the formation of a Michael adduct at the -5 position. In addition, a number of other chemical variants of the operator have been analysed. These include operators incorporating deoxyadenine residues at each of the important single-stranded adenine sites. Recently the Michael adduct proposal has been challenged on the basis of mutagenesis of the coat protein cysteine residues. These results are discussed in the light of our data in support of Michael adduct formation.

Base Composition

Histidine-stimulated acid secretion in the conscious rat is mediated by amino acid uptake system N.

The characteristics of sodium-dependent, histidine-stimulated gastric acid secretion were studied in the conscious gastric-fistulated rat. Intragastric L-histidine, but not glutamine, asparagine, glutamic acid or glycine, stimulated acid secretion. The histidine-stimulated acid secretion was inhibited by the presence of glutamine or asparagine, but not by glutamic acid or glycine. The substitution of lithium for sodium in the gastric perfusate was tolerated. Together with previous data, the results indicate that an N-like amino acid uptake system mediates histidine-stimulated acid secretion in the conscious rat.

Amino Acids

Modeling loop structures in proteins and nucleic acids: an RNA stem-loop.

We have used a novel modeling technique, based on combining information from several preexisting structures, to generate a three-dimensional (3D) model for the RNA stem-loop responsible for translational repression of the MS2 RNA bacteriophage replicase. Specific features of the model have been tested experimentally by chemical and enzymatic structural probes; results from these experiments have been used to "improve" the model by fixing initial assumptions. The new model and chemical modification data are in part consistent, and further predictions are being tested. The modeling algorithm has a wide range of potential applications, particularly to loop regions in proteins and nucleic acids.

Algorithms