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Biomedical subjects

D Harbour

Publications and source records attributed to D Harbour.

8 recordsLinked to original sources

Glucocorticoids in malignant lymphoid cells: gene regulation and the minimum receptor fragment for lysis.

We have examined clones of human malignant lymphoid cells for markers that correlate with glucocorticoid-mediated cell lysis. In glucocorticoid-sensitive clones of CEM, a human T-cell lymphoblastic leukemia line, two genes correlate with glucocorticoid-induced cell lysis. The glucocorticoid receptor (GR) itself is induced by standard glucocorticoids in sensitive clones and not in insensitive clones. The phenylpyrazolo-glucocorticoid cortivazol (CVZ) is capable of lysing several clones resistant to high concentrations of standard potent glucocorticoids. When these clones were tested for cortivazol responses, they were not only lysed by cortivazol but also showed induction of GR mRNA. Thus receptor induction appears to correlate with the lysis function of receptor in these cells. To determine what parts of the GR are required for lysis, we have mapped this function by transfecting and expressing GR and GR fragment genes in a GR-deficient CEM clone. Our results indicate that none of the known trans-activation regions of the GR are required. Removal of the steroid binding domain gives a fragment that is fully constitutive. Only one and one-half "Zn fingers" of the DNA binding region are required. We also find in CEM cells rapid suppression of the c-myc protooncogene, preceding growth arrest and cell lysis by glucocorticoids. This occurs only in clones possessing both intact receptors and lysis function. Thus the simple presence of GR alone is not sufficient to guarantee c-myc down-regulation. Introduction into the cells of c-myc driven by a promoter that does not permit suppression by glucocorticoids confers resistance to steroids. Furthermore, suppression of c-myc by antisense oligonucleotides also kills the cells. Therefore, c-myc appears to be a pivotal gene related both to ability of steroid to kill and to cell viability.

Cell Line

Sequence of the gene encoding the major neutralization antigen (VP7) of serotype 10 rotavirus.

The sequence of the gene encoding the major neutralization antigen (VP7) of the type member (bovine virus strain B223) of the proposed serotype 10 of rotavirus has been determined. This was done using a rapid new strategy involving direct sequencing by primer extension of cDNA generated from the relevant virus gene (gene 8) using a combined reverse transcription/polymerase chain reaction. The sequence obtained is 1062 bp in length and contains a single long open reading frame capable of encoding a protein of 326 amino acids. Comparison of the sequence to that of the corresponding gene of the other major virus serotype found in cattle, serotype 6, showed that it was approximately 25% divergent at the nucleotide level and 18% divergent at the amino acid level.

Amino Acid Sequence

Platelet-activating factor (PAF-acether) enhances the concomitant production of tumour necrosis factor-alpha and interleukin-1 by subsets of human monocytes.

The production of the cytokines tumour necrosis factor (TNF) and interleukin-1 (IL-1) by human monocytes was analysed following their stimulation with muramyl dipeptide (MDP; 1 microgram/ml), in the absence or presence of graded concentrations of platelet-activating factor (PAF). Significantly enhanced production of both TNF and IL-1 was observed at two concentration ranges of PAF: a major enhancement was observed at 10(-8)-10(-6) M and this was blocked by the PAF antagonist BN 52021 (10(-4) M). A second enhancement was observed at 10(-15)-10(-14) M PAF, which was not blocked by BN 52021. Monocytes isolated either by adherence or counterflow elutriation had similar responses to PAF. The biologically inactive precursor-metabolite, lyso-PAF, had no effect on cytokine production. PAF was shown to augment the production of both bioactive TNF and IL-1 and immunoreactive TNF-alpha and IL-1 alpha and beta. Fractionation of monocytes on a discontinuous Percoll gradient yielded a denser subpopulation, which responded preferentially to higher PAF concentrations, while the less dense subpopulation responded to both concentration ranges. These data indicate that PAF can modulate monocyte functions as related to cytokine production, and may thus contribute to amplification of inflammatory reactions and regulation of immune responses by interacting with subsets of human monocytes.

Acetylmuramyl-Alanyl-Isoglutamine

The application of polymerase chain reaction to the detection of rotaviruses in faeces.

An assay protocol based on exploiting the polymerase chain reaction (PCR) for the detection of rotavirus in infected faeces is described. The assay is 100,000 times more sensitive than the standard electropherotype method that is widely used. It also gives a 5000-fold increase in sensitivity over the hybridisation based assay previously developed (Pedley and McCrae, 1984) and does not require the use of radioisotopes. The amplified product is a full length c-DNA copy of the gene encoding the major neutralisation antigen of the virus whose molecular cloning and sequence analysis will allow detailed information on the molecular basis of epidemiological variation to be rapidly collected.

Animals

Secretory proteins from adrenal medullary cells are carboxyl-methylated in vivo and released under their methylated form by acetylcholine.

The carboxyl methylation of secretory proteins in vivo was investigated in bovine adrenal medullary cells in culture. Chromogranin A, the major intragranular secretory protein in adrenal medullary cells, and other secretory proteins were found to be carboxyl-methylated within secretory vesicles. The in vivo labeling pattern using [methyl-3H]methionine and the in vitro labeling pattern using S-adenosyl-[methyl-14C]methionine of intravesicular secretory proteins were similar. The detection of methylated chromogranin A in mature secretory vesicles required 3-6 h, a time consistent with the synthesis and storage of secretory proteins in this tissue. Carboxyl-methylated chromogranin A was secreted from medullary cells by exocytosis via activation of nicotinic cholinergic receptor and recovered still under the methylated form in the incubation medium. Since protein-carboxyl-methylase is cytosolic, these results suggest that methylation of secretory proteins is a cotranslational phenomenon.

Acetylcholine

Purification and characterization of protein methylesterase from rat kidney.

Protein methylesterase, an enzyme that hydrolyzes protein methyl esters, has been purified. The purification procedure includes ammonium sulfate and acid precipitations, and chromatographies on Sephadex G-100, Polybuffer exchanger 94, and matrex gel Green A. With this procedure, protein methylesterase was purified 1190-fold with a 28% recovery in activity. Its molecular weight has been estimated by polyacrylamide gel electrophoresis under denaturing conditions and by molecular sieving under native conditions at 31,000. Protein methylesterase has an optimum pH of 4.0 and an isoelectric point of 4.45. The enzyme is stable over a wide range of pH (2-10). The Km for ovalbumin methyl esters was estimated at 5.9 microM. Monovalent ions had little effect on activity while divalent ions at concentrations above 50 mM inhibited protein methylesterase activity in a concentration-dependent manner.

Animals

Sensitive assay detects protein methylesterase in spermatozoa: decrease in enzyme activity during epididymal maturation.

A more sensitive assay for protein methylesterase (PME) was developed. The new assay measures the methanol formed from hydrolysis of protein-methyl esters instead of methyl esters remaining on proteins. The formation of methanol is linear with time and enzyme concentration up to 20% of substrate hydrolysis. With this assay, we have detected very low PME activity in rat spermatozoa from cauda epididymidis. However, PME activity in spermatozoa from caput epididymidis was 10-fold higher. In a more detailed study on bull spermatozoa during epididymal maturation, we observed that PME activity was low in testicular spermatozoa, increased in spermatozoa from caput epididymidis to a maximum of 1.29 pmol/mg protein, and progressively decreased to a very low level (0.06 pmol/mg protein) in spermatozoa from cauda epididymidis. The drop in PME activity during epididymal transit parallels the progressive acquisition of motility and fertilizing capacity by spermatozoa.

Animals