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Biomedical subjects

G D Hunter

Publications and source records attributed to G D Hunter.

At least 19 recordsLinked to original sources

Is the behaviour of the leg during oscillation linear?

The linear behaviour of the human leg was studied using a free oscillation method. The lower leg is represented by a simple mass, spring and dashpot model. Forty-five subjects underwent free vibration tests on their right legs. The force amplitude and the time period, for successive oscillations enabled calculation of the stiffness to mass ratio values. It was found that the time period of the second oscillation cycle was significantly lower than that of the first, implying a corresponding increase in stiffness. The experimental data consistently exhibits these non-linear characteristics, indicating that the use of non-linear models could be of benefit for future free oscillation studies.

Adult↗

Proteinase-activated receptors.

Proteinase-activated receptors are a recently described, novel family of seven-transmembrane G-protein-coupled receptors. Rather then being stimulated through ligand receptor occupancy, activation is initiated by cleavage of the N terminus of the receptor by a serine protease resulting in the generation of a new tethered ligand that interacts with the receptor within extracellular loop-2. To date, four proteinase-activated receptors (PARs) have been identified, with distinct N-terminal cleavage sites and tethered ligand pharmacology. In addition to the progress in the generation of PAR-1 antagonists, we describe the role of thrombin in such processes as wound healing and the evidence implicating PAR-1 in vascular disorders and cancer. We also identify advances in the understanding of PAR-1-mediated intracellular signaling and receptor desensitization. The cellular functions, signaling events, and desensitization processes involved in PAR-2 activation are also assessed. However, other major aspects of PAR-2 are highlighted, in particular the ability of several serine protease enzymes, in addition to trypsin, to function as activators of PAR-2. The likely physiological and pathophysiological roles for PAR-2 in skin, intestine, blood vessels, and the peripheral nervous system are considered in the context of PAR-2 activation by multiple serine proteases. The recent discovery of PAR-3 and PAR-4 as additional thrombin-sensitive PARs further highlights the complexity in assessing the effects of thrombin in several different systems, an issue that remains to be fully addressed. These discoveries have also highlighted possible PAR-PAR interactions at both functional and molecular levels. The future identification of other PARs and their modes of activation are an important future direction for this expanding field of study.

Animals↗

The cloning and sequencing of the alcB gene, coding for alcohol dehydrogenase II, in Aspergillus nidulans.

Alcohol dehydrogenase II (ADH II, structural gene alcB) was purified from a strain H1035, biA1; alcE1; alc500 alcD1, which produces 100-times more ADH II activity than the alcAalcR deletion strain (alc500). Antibodies were raised against this ADH, and were used to screen a cDNA library in lambda gt11. We have isolated the gene for an ADH which is over-expressed in H1035, and which we believe to be the alcB gene: cDNA and genomic clones were sequenced. The sequence contains three introns and encodes a protein of 367 amino acids. This protein shows a clear level of identity to a range of alcohol dehydrogenases, but is no more closely related to the ADH I and ADH III previously described in A. nidulans than to the ADHs of S. pombe and S. cerevisiae. The significance of consensus sequences found in the 5' region of the gene is discussed in relation to the regulation of the gene.

Alcohol Dehydrogenase↗

Expression of a bacterial aspartase gene in Aspergillus nidulans: an efficient system for selecting multicopy transformants.

The Escherichia coli aspartase gene aspA has been expressed in the fungus Aspergillus nidulans using the powerful constitutive gpdA promoter and trpC terminator, both from A. nidulans. Multiple, but not single, copies of aspA overcome nutritional deficiencies resulting from the loss of catabolic NAD-linked glutamate dehydrogenase. They also circumvent certain nutritional deficiencies resulting from loss of the positive-acting regulatory gene product mediating nitrogen metabolite repression. Both of these cases of physiological suppression involve the aspartase-catalyzed catabolism of aspartate to ammonium plus fumarate. No physiological evidence for the opposite reaction leading to aspartate synthesis was obtained as multiple copies of aspA did not affect the phenotype resulting from the loss of anabolic NADP-linked glutamate dehydrogenase. The use of vectors containing aspA and recipients lacking NAD-linked glutamate dehydrogenase is an efficient means of selecting multicopy transformants in A. nidulans and also offers the possibility to select strains having increased aspartase levels from original transformants.

Aspartate Ammonia-Lyase↗

Ganglioside patterns during cerebral development in the normal and reeler mouse.

Gangliosides were extracted from cerebral tissue of reeler and normal mice, and analyzed by two-dimensional thin-layer chromatography at embryonic and postnatal ages. The ganglioside pattern changed substantially as development proceeded in the telencephalon of both reeler and normal mice, but was the same at any given age for both conditions, despite the marked histological differences between reeler and normal samples. These results indicate that abnormal ganglioside patterns do not result from the reeler mutation at early stages of brain development, and that the cell misalignment characteristic of the reeler phenotype involves molecules other than gangliosides.

Animals↗

Catecholamine metabolism in brain slices. Determination of relevant precursor pool and the effects of elevated K+.

Catecholamine synthesis from [3H]tyrosine was studied in slices of striatum, cerebellum and substantia nigra of mice. If low concentrations of tyrosine (less than 5.5 microM) were added to the incubation medium, the slices released significant amounts of tyrosine into the medium during the incubation. Kinetic analysis of the same experiments indicated that medium tyrosine and not tissue tyrosine was the appropriate precursor for both dopamine (DA) synthesis and protein synthesis in striatal slice. Concentrations of medium tyrosine of 8.25 microM or greater were sufficient to prevent changes of medium tyrosine during incubation and thus maintained a constant specific activity of precursor. Increasing concentrations of medium K+ increased both the accumulation of [3H]DA and its release from striatal slices. However, accumulation was stimulated at a concentration of K+ (14 mM) that had no significant stimulatory effect on release, suggesting that the stimulatory effects of K+ on synthesis and release are mediated by separate processes. Release of 14CO2 from [1-14C]tyrosine closely paralleled the accumulation of [3H]DA from [3H]tyrosine. Release of preloaded [14C]DA closely paralleled that of [3H]DA synthesized from [3H]tyrosine, suggesting a common functional pool. The principal DA catabolite produced was dihydroxyphenylacetic acid (DOPAC). The appearance of labeled DOPAC in the media was greatly enhanced by K+ stimulation.

Animals↗

Interspecies comparison of brain ganglioside patterns studied by two-dimensional thin-layer chromatography.

Brain gangliosides from four vertebrate classes (fish, amphibia, aves, and mammalia) were studied by patterns generated with the use of two-dimensional thin-layer chromatography. In an effort to retain possible alkalilabile gangliosides, samples were not base-hydrolyzed. Resultant chromatograms revealed complex patterns of the major known gangliosides and a number of minor and trace molecular species previously unresolved. More than 30 resorcinol-positive components were detected in mammalian neural samples. Our data indicate both qualitative and quantitative differences in the chromatogram patterns between the vertebrate classes, but potentially greater qualitative similarity exists between the lower and higher classes than has previously been noted.

Animals↗

Search for scrapie-specific RNA and attempts to detect an infectious DNA or RNA.

Preparations of in vivo labelled RNA from normal and scrapie infected mouse brains were fractionated by polyacrylamide gel electrophoresis. No appreciable differences were detected between the two preparations. The biological activity of preparations of RNA and DNA from scrapie brain was also examined. In each case the nucleic acid was obtained by one method envolving the use of phenol and one without phenol. Attempts were made to bind the nucleic acid to normal membrane by three different methods. In no instance was a single case of scrapie obtained by inoculating nucleic acid extracts from scrapie brain either alone or associated with normal membranes. It is concluded that a putative scrapie-specific nucleic acid must either be present in scrapie brain in such an unusual from that it is not extracted readily by methods suitable for the preparation of most virus nucleic acids; or, if it is extracted, that it has no detectable biological activity. In either case, the scrapie agent differs substantially in its properties from the plant viroids.

Animals↗

Scrapie.

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Animals↗