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Biomedical subjects

L Jamieson

Publications and source records attributed to L Jamieson.

12 recordsLinked to original sources

Cloning of an intracellular receptor for protein kinase C: a homolog of the beta subunit of G proteins.

Protein kinase C (PKC) translocates from the soluble to the cell particulate fraction on activation. Intracellular receptors that bind activated PKC in the particulate fraction have been implicated by a number of studies. Previous work identified 30- to 36-kDa proteins in the particulate fraction of heart and brain that bound activated PKC in a specific and saturable manner. These proteins were termed receptors for activated C-kinase, or RACKs. In the following study, we describe the cloning of a cDNA encoding a 36-kDa protein (RACK1) that fulfills the criteria for RACKs. (i) RACK1 bound PKC in the presence of PKC activators, but not in their absence. (ii) PKC binding to the recombinant RACK1 was not inhibited by a pseudosubstrate peptide or by a substrate peptide derived from the pseudosubstrate sequence, indicating that the binding did not reflect simply PKC association with its substrate. (iii) Binding of PKC to RACK1 was saturable and specific; two other protein kinases did not bind to RACK1. (iv) RACK1 contains two short sequences homologous to a PKC binding sequence previously identified in annexin I and in the brain PKC inhibitor KCIP. Peptides derived from these sequences inhibited PKC binding to RACK1. Finally, RACK1 is a homolog of the beta subunit of G proteins, which were recently implicated in membrane anchorage of the beta-adrenergic receptor kinase [Pitcher, J., Inglese, L., Higgins, J. B., Arriza, J. A., Casey, P. J., Kim, C., Benovic, J. L., Kwatra, M. M., Caron, M. G. & Lefkowitz, R. J. (1992) Science 257, 1264-1267]. Our in vitro data suggest a role for RACK1 in PKC-mediated signaling.

Amino Acid Sequence

Characterized and predictable rabbit uveitis model for antiinflammatory drug screening.

A model has been developed for the screening of antiinflammatory ophthalmic drugs in rabbits. This simple and rapid method is reproducible and uses fewer animals than do some other methods. Rabbits are sensitized to bovine serum proteins, then challenged intravitreally to induce a uveitis. The basis of the inflammatory response is shown to be due primarily to an immunologic mechanism. At 24 hr postchallenge, animals are sorted into treatment groups of approximately equal "titer" as defined by the slit lamp examination iris score which measures the magnitude of the immunologic response. Topical ocular treatment (control or drug) is then initiated and continued for a total of four days. Iris inflammation is evaluated by daily slit lamp exams. Results indicate that this model has statistically narrower frequency distribution of iris ratings than another published method, and is faster than other equally accurate and precise methods that depend upon blood antibody titer to sort animals.

Administration, Topical

The thermogenic role of adipose tissue in the dog.

Brown adipose tissue was clearly present in neonatal dogs. In the adult the tissue was superseded by a tissue with the gross characteristics of white adipose. However despite their appearance adult adipose tissue depots may contribute to non-shivering thermogenesis. Regional blood flow measurements using injected radioactive microspheres indicated large increases in blood flow to adipose depots during infusion of noradrenaline. Coupled with blood flow estimations, measurement of arteriovenous differences in dissolved oxygen across the bladder fat depot demonstrated a quantitative increase in oxygen extraction by the depot during noradrenaline infusion. Acute activation of non-shivering thermogenesis in the dog was not associated with increased mitochondrial GDP-binding in adipose tissue. However chronic treatment with a beta-stimulant (LY79730) which increased capacity for non-shivering thermogenesis was associated with increased mitochondrial GDP-binding and cytochrome oxidase activity in peri-renal adipose tissue.

2-Hydroxyphenethylamine

Effect of noradrenaline on oxygen consumption and tissue blood flow in young pigs.

Metabolic rate and tissue blood flow were measured by indirect calorimetry and the radioactive microsphere technique, respectively, in anaesthetized pigs aged 10, 17, and 28 days during infusions of saline or noradrenaline. Noradrenaline produced a rise in oxygen consumption in all pigs but the magnitude of the response declined with age in Large White pigs (percent increase: 10 days old, 29.5 +/- 3.3; 17 days old, 15.3 +/- 3.2; 28 days old, 5.4 +/- 0.17) and was less in 10-day-old Minipigs (9.1 +/- 5.1). Regional blood flow per gram of tissue was similar for pigs of all ages and noradrenaline produced increases in flow to heart and skin, and small reductions in blood flow to skeletal muscle. Noradrenaline increased average blood flow to adipose tissue (four sites) by 21-fold in 10-day-old Large White pigs, but had less effect in 10-day-old Minipigs (9.5-fold) and in older Large White pigs (9-fold), where the effect on metabolic rate was diminished. It is calculated that adipose tissue could be responsible for the increase in metabolic rate during infusion of noradrenaline. Macroscopically there are no gross differences between various adipose tissue depots in the pig but those which showed the greatest response to noradrenaline correspond to areas where brown adipocytes have previously been identified by electron microscopy.

Adipose Tissue