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C J Willmott

Publications and source records attributed to C J Willmott.

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The complex of DNA gyrase and quinolone drugs with DNA forms a barrier to transcription by RNA polymerase.

The effects of DNA gyrase and quinolone drugs on in vitro transcription of a template containing a preferred gyrase cleavage site have been investigated. We have found that gyrase-quinolone complexes with DNA lead to blocking of transcription by Escherichia coli and bacteriophage T7 RNA polymerases. Either gyrase or quinolone alone has no effect on transcription. With DNA gyrase containing a point mutation in the gyrase A protein, known to confer quinolone resistance, blocking was found to occur only at much higher concentrations of the drug. Other agents that inhibit gyrase-catalysed supercoiling (novobiocin and 5'-adenylyl-beta,gamma-imidodiphosphate) do not arrest transcription in the presence of gyrase. Mapping of the transcription termination sites in the presence of gyrase and quinolones shows that blocking occurs about 10 to 20 base-pairs upstream of the gyrase cleavage site. Analysis of transcription in the absence of drug suggests that RNA polymerase does not displace gyrase from the template. These results are discussed in the light of models for the bactericidal effects of quinolone drugs.

Adenylyl Imidodiphosphate↗

Hand-hemispace spatial compatibility, precueing, and stimulus-onset asynchrony.

The role of attention and the resolution of coding conflicts in hand-hemispace spatial-compatibility effects was examined in a precueing experiment in which visual and vibrotactile precues, with various stimulus-onset asynchronies (SOAs), were presented in blocked and random order. It was expected that precues at the shorter SOAs would fail to facilitate the shifting of attention, as they occur too close to the imperative stimulus to be informative. The task would therefore approximate one of choice reaction time (RT), resulting in a hand-hemispace spatial-compatibility effect. Conversely, the longer SOAs would provide the subject with sufficient time in which to shift attention fully, and would therefore result in a task more like that of simple reaction time (SRT). It was expected that the hand-hemispace spatial-compatibility effect would then be absent. As was expected, this effect was present at the shorter SOAs, and absent at the longer SOAs. In Experiments 2 and 3, provision of a visual precue further facilitated attentional deployment, as did blocking the presentation of various SOAs in Experiment 3. Vibrotactile and visual precues did not differ in their ability to direct attention, implying that these modalities orient attention and precue location in essentially similar ways. These findings are discussed within the context of the mechanisms though to underlie the time course of spatial compatibility and the dissipation of a fading trace of interfering spatial codes.

Adult↗