Search PubMed⌕ Search

Biomedical subjects

A M Edwards

Publications and source records attributed to A M Edwards.

At least 127 records · Page 7Linked to original sources

Purification and lipid-layer crystallization of yeast RNA polymerase II.

Yeast RNA polymerase II was purified to homogeneity by a rapid procedure involving immunoaffinity chromatography. The purified enzyme contained 10 subunits, as reported for conventional preparations, but with no detectable proteolysis of the largest subunit. In assays of initiation of transcription at the yeast CYC1 promoter, the enzyme complemented the deficiency of an extract from a strain that produces a temperature-sensitive polymerase II. Mammalian RNA polymerase II was inactive in this initiation assay. The purified yeast enzyme formed two-dimensional crystals on positively charged lipid layers, as previously found for Escherichia coli RNA polymerase holoenzyme. Image analysis of electron micrographs of crystals in negative stain, which diffracted to about 30-A resolution, showed protein densities of dimensions consistent with those of single polymerase molecules.

Chromatography, Affinity↗

Stimulation of DNA synthesis in primary rat hepatocyte cultures by liver tumor promoters: interactions with other growth factors.

Mechanism(s) of tumor promotion in liver by xenobiotics such as hexachlorocyclohexane (HCH), 1,1,1-trichloro-2,2-bis (4-chlorophenyl)ethane (DDT) and phenobarbital (PB) are not understood in detail although growth-stimulatory effects may be significant in their action. As a basis for studying mechanisms of growth control by liver tumor promoters, effects of xenobiotics on DNA synthesis have been examined in primary cultures of normal rat hepatocytes, maintained under fully-defined conditions. The xenobiotics alone were relatively ineffective but they exhibited synergism with epidermal growth factor (EGF), insulin and dexamethasone in stimulating DNA synthesis and were effective in moderate-to-low density cultures but not in confluent monolayers. Under conditions optimized for HCH or pregnenolone 16 alpha-carbonitrile (PCN) (i.e. subconfluent cultures exposed to insulin, EGF and dexamethasone), HCH, PCN, DDT or PB caused a transient stimulation of DNA synthesis, apparent after 2 days in culture. This probably reflected earlier entry of hepatocytes to S-phase. HCH was shown to increase total DNA, total numbers of nuclei and numbers of cells undergoing mitosis per culture. In optimized conditions, HCH or PCN were about additive with norepinephrine, dialyzed serum or pyruvate or with a small effect of tri-iodothyronine in stimulating DNA synthesis. Although conditions optimal for HCH or PCN were not necessarily optimal for detecting growth-stimulatory effects of other xenobiotics or steroids, these culture conditions were shown to support stimulation of DNA synthesis by a variety of known liver tumor promoters including barbiturates, estrogens, progestins, peroxisomal proliferators and bile acids. Several compounds known not to promote liver carcinogenesis failed to stimulate DNA synthesis in similar hepatocyte cultures.

Animals↗

Two isoforms of myelin-associated glycoprotein accumulate in quaking mice: only the large polypeptide is phosphorylated.

We have shown that the developmentally regulated appearance of the two myelin-associated glycoprotein (MAG) polypeptides in normal mouse brain myelin does not reflect the developmental pattern of differential splicing of primary gene transcripts as determined earlier by RNase protection assays. Contrary to expectation, the large (L-MAG) and small (S-MAG) polypeptides are present in about equal amounts at a relatively early stage of myelination, day 24 or earlier. In quaking (qk) mutant mouse brain myelin, both MAG polypeptides are evident at all ages examined; the relatively greater abundance of S-MAG compared to L-MAG at early ages (days 18 and 22) confirms our earlier observation on in vitro translations of mRNA. At later ages (day 27 and beyond) both isoform are present in approximately equal amounts. The L-MAG but not the S-MAG polypeptide can be phosphorylated by kinases that are endogenous to isolated qk myelin, analogous to the phosphorylation we have observed in vivo in normal mice and in their isolated myelin.

Animals↗

Interaction of myelin basic protein and proteolipid protein.

The interaction of myelin basic protein (MBP) and proteolipid protein (PLP) was studied using a microtitre well binding assay and the ligand-blot overlay technique. The binding of iodinated PLP to MBP that was immobilized on microtitre wells was saturable and reversible. Its selectivity was investigated by the ligand-blot overlay technique. Iodinated PLP was found to bind MBP but not any other CNS myelin proteins. This interaction was not dependent on the phosphoryl moiety of MBP. Binding of PLP to histone H4 also occurred, but the amount of PLP bound per unit MBP was greater than for this histone.

Animals↗

Chemical deglycosylation on a micro-scale of membrane glycoproteins with retention of phosphoryl-protein linkages.

We provide here an easy and convenient procedure for the chemical deglycosylation of membrane glycoproteins that can be done rapidly and inexpensively on large numbers of membrane samples on a microscale without prior isolation of the glycoprotein in question. We have used the procedure successfully on three different glycoproteins and additionally have shown that covalent linkages of the polypeptide to phosphoryl residues are preserved.

Animals↗

Phosphorylation of myelin-associated glycoprotein in vivo and in vitro occurs only in the cytoplasmic domain of the large isoform.

Myelin-associated glycoprotein (MAG) was radioactively labelled with 32P both in intact brain and in myelin membrane preparations. Chemical deglycosylation of the phosphorylated products revealed that only one of the MAG isoforms (L-MAG) is labelled in vitro. Furthermore, the phosphorylation events in vivo and in vitro are confined to the cytoplasmic portion of the L-MAG isoform. Tryptic mapping of L-MAG labelled both in vivo and in vitro revealed that the majority of the sites phosphorylated in intact brain are also phosphorylated in myelin membrane preparations; however, the extent of phosphorylation at individual sites is variable. The results demonstrate that partially purified myelin membrane preparations can be used to study the enzymes responsible for MAG phosphorylation and dephosphorylation events in vivo.

Animals↗

Comparison of a lactose-free formulation of sodium cromoglycate and sodium cromoglycate plus lactose in the treatment of asthma.

A double-blind, parallel group, 7-centre trial was carried out to compare the clinical efficacy and patient acceptability of two formulations of sodium cromoglycate for inhalation in patients suffering from asthma. Each single-dose capsule for use in a breath-actuated inhaler contained either a blend of sodium cromoglycate (20 mg) plus lactose (20 mg) or a lactose-free pelletized formulation of sodium cromoglycate (20 mg). Data were summarized from 529 asthmatic patients who had been using the blend formulation for at least 3 months previously. Two hundred and sixty-five patients then received pelletized sodium cromoglycate and 264 patients remained on sodium cromoglycate plus lactose for at least 3 months. Regular assessments were made by patients and clinicians during the trial period of treatment effectiveness. No clinically significant differences were observed between the two formulations after 3 months on test treatment. After a treatment period of 6 months, the pelletized formulation was shown to have some advantages over the blend formulation which were not observed at 3 months, with a significantly higher proportion of 'very effective' assessments being recorded by both patients and clinicians. The capsules of pelletized sodium cromoglycate required significantly less inhalations to empty compared to the capsules of the blend. No differences were observed between the two formulations with regard to the incidence of transient cough and throat irritation after inhalation.

Adolescent↗

Transrectal ultrasound in monitoring response to treatment of prostate disease.

Transrectal ultrasound provides a safe method for repeated assessments of the prostate gland in the follow-up of prostatic cancer. Changes in the echo pattern of the gland may be observed following treatment, but these may be difficult to interpret. The capsule may be restored; the tumor may appear smaller, and in some cases, ultrasound identification of the tumor may become impossible. The total gland volume decreases with chemotherapy and hormonal manipulation (subcapsular orchidectomy or drug-induced). The volume generally decreases after radiotherapy but may show a transient increase if there is some associated radiation proctitis. The rate of decrease of total prostatic volume has not been established as a reliable indicator of the subsequent prognosis. Future studies should assess whether sequential measurements of the tumor volume rather than the total prostatic volume may be a more useful guide to prognosis.

Humans↗

Myelin-associated glycoprotein, a cell adhesion molecule of oligodendrocytes, is phosphorylated in brain.

Myelin-associated glycoprotein (MAG) has been implicated in the mediation of interactions between oligodendrocytes and neurons during the development of the myelin sheath. Here we show that MAG is phosphorylated in intact myelinating mouse brain primarily at serine residues and to a lesser extent at threonine and tyrosine residues. In vivo, only the larger of the two developmentally regulated MAG isoforms is phosphorylated. MAG can be phosphorylated at tyrosine by the v-fps and v-src protein-tyrosine kinases in vitro and by a kinase endogenous to myelin membrane preparations. MAG phosphorylated in myelin membranes in vitro also contains phosphoserine and phosphothreonine. These observations suggest that phosphorylation of MAG is physiologically significant in regulating oligodendrocyte-neuron interactions.

Animals↗

Gene expression of the central and peripheral nervous system myelin membrane 2', 3'-cyclic nucleotide 3'-phosphodiesterase in development.

Determination of gene expression for the 2', 3'-cyclic nucleotide 3'-phosphodiesterase (CNP) during development shows that the amount of translatable RNA encoding this enzyme increases in parallel with myelination in the mouse brain. The two isoforms of this enzyme are developmentally regulated in parallel, in contrast to several other myelin proteins. By comparison, the amount of translatable RNA encoding CNP in the peripheral nervous system (rat sciatic nerve) remains constant during development. The two isoforms that are expressed are identical in apparent molecular weight to rat brain CNP. Moreover, no apparent differences were detected by proteolytic digestion (Cleveland mapping) of CNP 1 from the central or peripheral nervous systems.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Two distinct mechanisms for regulation of gamma-glutamyl transpeptidase in cultured rat hepatocytes by glucocorticoid-like steroids.

Adult rat hepatocytes maintained in primary monolayer culture with defined medium were used to characterise two effects of glucocorticoid-like steroids in regulating gamma-glutamyltranspeptidase (GGT). Low concentrations of glucocorticoids alone had little effect on GGT but synergistically enhanced induction of the enzyme by liver tumor-promoting xenobiotics such as 1,1,1-trichloro-2,2-bis-(4-chlorophenyl)-ethane (DDT) and hexachlorocyclohexane. The enhancing effect appears to be mediated by the classical glucocorticoid hormone receptor since structural requirements and concentration-dependence for enhancement were similar to those for induction of tyrosine aminotransferase in parallel cultures. Higher concentrations (1-100 microM) of various glucocorticoids alone increased GGT activity. Most glucocorticoids induced GGT but their order of potency did not parallel that for induction of tyrosine aminotransferase under similar culture conditions. Among the most potent glucocorticoids, triamcinolone was a weak GGT inducer and cortivazol appeared to act as an antagonist of GGT induction by steroids. Some non-glucocorticoids including pregnenolone 16 alpha-carbonitrile, and some progestins, also induced but required addition of 30 nM dexamethasone for maximal effect. Some specific steroid structural features were identified which increased (presence of a 16 alpha methyl group) or impaired GGT-inducing activity. Although interpretation is complicated by differential metabolism of individual steroids in culture, the results suggest that GGT induction by pharmacological levels of steroids may be mediated, directly or indirectly, by one or more relatively specific receptors distinct from the classical glucocorticoid receptor.

Animals↗

Cyclic AMP decreases the phosphorylation state of myelin basic proteins in rat brain cell cultures.

Previous work has suggested that myelin basic proteins are phosphorylated prior to their appearance in the myelin sheath (Ulmer, J. B. and Braun, P. E. (1984) Dev. Neurosci. 6, 345-355). In order to corroborate this finding we have examined the phosphorylation of myelin basic proteins in rat brain cell cultures containing 14-17% oligodendrocytes. Incorporation of 32P into the 14-, 17-, 18.5-, and 21.5-kDa myelin basic proteins was observed in cells incubated with 32P at 7, 14, and 21 days in culture. Myelin basic proteins in 14-day cells incorporated 32P linearly until at least 120 min after the addition of isotope. The apparent half-life of myelin basic protein phosphate groups was determined to be approximately 80 min in pulse-chase experiments. However, this value may be an overestimation due to the presence of significant levels of acid-soluble radioactivity in the cells throughout the chase period. The presence of dibutyryl cAMP or 8-bromo-cAMP in the incubation medium substantially inhibited the incorporation of 32P into the myelin basic proteins at all time points studied. The presence of dibutyryl cAMP in the chase medium in pulse-chase experiments resulted in an increase in the turnover rate of [32P] phosphate in the myelin basic proteins. These results indicate that cAMP decreases the phosphorylation state of myelin basic proteins in oligodendrocytes by inhibiting the phosphorylation and/or stimulating the dephosphorylation of myelin basic proteins.

Animals↗

Effect of dexamethasone on cytochrome P-450 mediated metabolism of 2-acetylaminofluorene in cultured rat hepatocytes.

The metabolism of 2-acetylaminofluorene (AAF) to its six oxidative metabolites has been used to investigate the effect of dexamethasone on cytochrome P-450 activity in cultured rat hepatocytes. In control hepatocytes the metabolism of AAF to its 1-, 5-, 7-, 9- and N-hydroxylated metabolites rapidly declined in culture over the first 24 hr while 3-hydroxylation remained relatively constant. These activities either remained unchanged or increased slightly during the next 48 hr in culture. The addition of dexamethasone (100 nM) to the culture medium had little effect in arresting the initial decline but by 72 hr the 7-, 5- and 3-hydroxylations increased to values 2.5, 16 and 21 times the respective 24-hr values. The inductive effect of dexamethasone on the 3- and 5-hydroxylations of AAF was maximal at 100 nM whereas the 7-hydroxylation increased linearly as a function of the dexamethasone concentration up to 1 microM. Cortisol and corticosterone and the non-glucocorticoids fluoxymesterone and methyltestosterone induced a pattern of AAF metabolism resembling that in dexamethasone-treated cultures, suggesting that a range of steroids not restricted to glucocorticoids may induce multiple cytochrome P-450 isozymes via related mechanisms. Pregnenolone 16 alpha-carbonitrile induced only the 7-hydroxylation of AAF probably reflecting induction of cytochrome P-450p. While dexamethasone was a strong inducer of the 3- and 5-hydroxylations of AAF in hepatocyte culture, assay of these activities in freshly isolated cells after in vivo treatment with dexamethasone showed a strong induction of 7-hydroxylation but only small effects on 3- and 5-hydroxylations. Indeed the profile of AAF metabolism induced in culture by dexamethasone resembles more closely the profile induced by 3-methylcholanthrene in vivo. These data suggest that factors yet to be identified strongly influence the steroid-induced pattern of cytochrome P-450 gene expression.

2-Acetylaminofluorene↗

Modulation of gamma-glutamyltranspeptidase in normal rat hepatocytes in culture by cell density, epidermal growth factor and agents which alter cell differentiation.

To help clarify whether elevation of gamma-glutamyltranspeptidase (GGT) in hepatocytes is associated with particular pattern(s) of liver differentiation, adult rat hepatocytes in primary culture were maintained for up to 5 days under conditions considered to alter differentiation in liver or other cells: basal GGT activity in untreated cultures and inducibility of the enzyme by known inducers such as dexamethasone, p,p'-dichlorodiphenyltrichloroethane or pregnenolone 16 alpha-carbonitrile were measured. Basal and induced GGT activities were maximal in confluent cultures and declined with decreasing cell density, an effect probably mediated by cell contact rather than factors in the culture medium. Opposite effects of cell density on GGT and DNA synthesis suggest that increased GGT activity is not linked with growth. Epidermal growth factor (EGF) increased basal GGT and augmented the action of xenobiotic inducers in lower density cultures, giving GGT activities approaching the levels in confluent cells. EGF had no effect on confluent cultures. Activators of protein kinase C such as tetradecanoyl phorbol acetate had significant but small inducing effects on GGT. Agents including all-trans retinoic acid, butyrate and dimethylsulfoxide which are considered to favour terminal differentiation in many cell types, all partly blocked induction of GGT by dexamethasone, EGF or xenobiotics. The results are consistent with (but do not prove) the view that elevated GGT activity may be associated with liver phenotype(s) distinct from terminal differentiation but not necessarily linked with growth.

Animals↗

Obtention of a photo-induced adduct between a vitamin and an essential aminoacid. Binding of riboflavin to tryptophan.

Studies in animals have suggested that the products of the irradiation of tryptophan in the presence of riboflavin may play a role in the development of hepatic dysfunction during parenteral nutrition. In this paper we describe the formation of an adduct between tryptophan and riboflavin obtained as a consequence of an anaerobic irradiation of these compounds. Through the use of molecular sieves and of an ion-exchange resin it was possible to separate the photo-adduct from the dimer riboflavin and other reaction products. The various fractions were characterized on the basis of their absorption and emission spectra. Also used were measures of anisotropy of fluorescence emission in order to characterize the derived adduct.

Light↗

Tail docking.

Explore the source record for details and available documents.

Animals↗

Exposure of tryptophanyl residues in alpha-lactalbumin and lysozyme. Quantitative determination by fluorescence quenching studies.

The effect of iodide ion on the tryptophyl fluorescence of the homologous proteins lysozyme and alpha-lactalbumin in their native form, as well as in their modified structures and in fragments from these proteins was studied. By assessing the contribution to the total fluorescence of the exposed and buried Trp residues, and of the respective fluorescence quantum yields, the quantification of the number of Trp exposed to the solvent for all the species studied was possible. Both native proteins show an important increase in the number of Trp residues exposed to the solvent when treated with denaturing agents. The peptides L-II (aa 13-105) and alpha-I (aa 1-90) from lysozyme and alpha-lactalbumin, respectively, showed Trp residues with different degree of exposure, whereas the smaller fragments, L-III (aa 106-129) and alpha-II (aa 91-123), had all their Trp residues exposed to the solvent.

Indicators and Reagents↗