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Biomedical subjects

M C Wright

Publications and source records attributed to M C Wright.

At least 37 records · Page 2Linked to original sources

Developmental changes in the constitutive and inducible expression of cytochrome P450 3A2.

Using a CYP3A2-specific oligonucleotide and an antipeptide antibody raised against the C terminus of CYP3A2 (VINGA) it is demonstrated that metyrapone administration to adult (12 weeks old) but not immature (3 weeks old) male Sprague Dawley rats induces the hepatic expression of CYP3A2 mRNA and protein. The constitutively expressed level of CYP3A2 protein in adult male rats is markedly lower than the levels expressed in immature rats as determined using the anti-VINGA antibody, in contrast to previous reports using antibodies that do not discriminate between CYP3A forms. Hepatic microsomal CYP3A2 protein expression, examined between 3 and 15 weeks of age, is extinguished between 9 and 12 weeks of age in contrast to immunoreactive CYP3A protein (determined using a nonselective antibody) and CYP3A-dependent androstenedione 6beta-hydroxylase activity. These data suggest that the regulation of the induction of CYP3A2 is developmentally controlled and that the major expressed adult form(s) of constitutively expressed CYP3A is not CYP3A2.

Animals↗

Effect of vitamin A deficiency on the expression of low affinity glucocorticoid binding site activity and glucocorticoid-dependent induction of CYP3A2 in rat liver.

Maintenance of rats on a vitamin A-deficient diet resulting in undetectable levels of plasma retinol and significant reductions in relative testes weight compared to age-matched controls leads to the loss of liver membrane-bound low affinity glucocorticoid binding site (LAGS) activity without any effects on the levels of constitutively expressed CYP3A2 protein. Subsequent daily administration of retinol acetate to vitamin A-deficient rats results in the re-expression of LAGS activity to control levels by 7 days. To determine any role for the LAGS in the modulation of CYP3A2 expression by glucocorticoids, a single dose of dexamethasone 21-phosphate was administered to vitamin A-deficient rats and vitamin A-deficient rats induced to re-express LAGS by daily retinol acetate treatment. Retinol acetate administration alone induces CYP3A2 protein to apparent maximal levels since dexamethasone 21-phosphate does not further increase the induction response. However, CYP3A2 remains inducible to dexamethasone 21-phosphate in vitamin A-deficient rats. These data suggest that vitamin A status affects the expression of LAGS and CYP3A2 but that glucocorticoids regulate the induction of CYP3A2 by a mechanism(s) independent of their interaction with the LAGS.

Animals↗

Continuous in vitro evolution of catalytic function.

A population of RNA molecules that catalyze the template-directed ligation of RNA substrates was made to evolve in a continuous manner in the test tube. A simple serial transfer procedure was used to achieve approximately 300 successive rounds of catalysis and selective amplification in 52 hours. During this time, the population size was maintained against an overall dilution of 3 x 10(298). Both the catalytic rate and amplification rate of the RNAs improved substantially as a consequence of mutations that accumulated during the evolution process. Continuous in vitro evolution makes it possible to maintain laboratory "cultures" of catalytic molecules that can be perpetuated indefinitely.

Base Sequence↗

Glucocorticoid receptor-independent transcriptional induction of cytochrome P450 3A1 by metyrapone and its potentiation by glucocorticoid.

Metyrapone administration to 21- and 90-day-old male rats causes a transcriptional induction of the hepatic glucocorticoid-inducible CYP3A1 gene within an hour as determined by nuclear run-on experiments. Analyses performed 24 hr after metyrapone administration in both ages of rat demonstrate that the transcriptional induction of CYP3A1 gene expression is followed by significant increases in CYP3A1 mRNA, CYP3A-immunoreactive microsomal protein and total microsomal cytochrome P450 (CYP). In 21-day-old rats, there is a significant increase in microsomal CYP3A dependent steroid 6 beta-hydroxylase activity but not in 90-day-old rats, possibly because of a slower clearance of this drug, which inhibits CYP activities. In hepatocytes cultured in serum- and glucocorticoid hormone-free medium, metyrapone alone induces CYP3A1 mRNA expression, which demonstrates that metyrapone transcriptionally induces hepatic CYP3A1 by a direct interaction with the liver. Metyrapone does not compete with the binding of the synthetic glucocorticoid and potent transcriptional CYP3A1 inducer dexamethasone to the glucocorticoid receptor (GR) in soluble fractions from liver. This suggests that metyrapone is not a ligand for the GR and induces CYP3A1 by a mechanism independent of the GR. Addition of glucocorticoid to cultured hepatocytes at levels that induce GR-dependent genes potentiate CYP3A1 mRNA induction by metyrapone without inducing CYP3A1 mRNA alone. A GR-dependent mechanism may therefore mediate the potentiation of CYP3A1 transcriptional induction by metyrapone. The CYP3A1 transcriptional inducer and glucocorticoid antagonist pregnenolone 16 alpha-carbonitrile at 100 microM blocks dexamethasone binding to the GR in 21-day-old rat liver soluble fractions but is less effective in 90-day-old rat liver soluble fractions in contrast with 10 microM glucocorticoid antagonist RU486, which is equally effective at blocking dexamethasone binding to the GR. The inability of pregnenolone 16 alpha-carbonitrile to fully compete with dexamethasone for cytosolic binding in adult animals suggests that there may exist variant receptors with different affinities for dexamethasone and pregnenolone 16 alpha-carbonitrile and may explain the mechanism by which low concentrations of dexamethasone potentiate the transcriptional induction of CYP3A1 mediated by high concentrations of pregnenolone 16 alpha-carbonitrile [J. Biol, Chem. 270:28917-28923 (1995)]. Examination of membrane-bound dexamethasone binding activity, with which other steroidal and nonsteroidal CYP3A inducers have been shown to compete, indicates that binding activity is detectable in 90- but not 21-day-old rat liver microsomes. The absence of membrane-bound glucocorticoid binding site activity and the presence of a functional CYP3A1 transcriptional response in 21-day-old rats suggest that membrane-bound glucocorticoid binding site activity is not involved in the transcriptional activation of CYP3A1 expression. These data suggest that both glucocorticoids and nonsteroidal compounds may trigger the transcriptional induction of CYP3A1 by a GR-independent mechanism that may be potentiated by a GR-dependent mechanism.

Aging↗

Homologous recombination as the main mechanism for DNA integration and cause of rearrangements in the filamentous ascomycete Ashbya gossypii.

A slow and a fast growth phenotype were observed after transformation of the phytopathogenic fungus Ashbya gossypii using a plasmid carrying homologous DNA and as selectable marker the Tn903 aminoglycoside resistance gene expressed from a strong A. gossypii promoter. Transformations with circular plasmids yielded slowly and irregularly growing geneticin-resistant mycelia in which 1% of nuclei contained plasmid sequences. Occasionally, fast growing sectors appeared which were shown to be initiated by homologous integration of the transforming DNA. Transformants obtained with plasmids linearized within the homology region immediately exhibited fast radial growth. In all 28 transformants analyzed plasmid DNA was integrated homologously. Such apparent lack of nonhomologous recombination has so far not been observed in filamentous ascomycetes. In 14 transformants two to four tandemly integrated plasmid copies were found. They underwent several types of genetic changes, mainly in the older mycelium: excision of whole plasmid copies and rearrangements within the integrated DNA (inversions and deletions). These internal rearrangements involved 360-bp inverted repeats, remnants of IS-elements flanking the resistance gene, and 156-bp direct repeats, originating from the strong A. gossypii promoter. Improved vectors lacking sequence repetitions were constructed and used for stable one-step gene replacement in A. gossypii.

Aminoglycosides↗

Behavioural effects of hospitalization in children.

Hospitalization is a common occurrence in childhood. The behaviour of most children is affected during and/or after hospitalization. This annotation lists factors that have been found to be associated with adverse behavioural outcomes as a result of hospitalization. Ways in which these behavioural effects may be minimized are discussed, concluding with an indication of areas for further research.

Adaptation, Psychological↗

Is community screening for amblyopia possible, or appropriate?

Photoscreeners are becoming increasingly available and are being widely used to screen for visual abnormalities in young children. However, consideration of accepted criteria for screening programs indicates there is still much further research that needs to be carried out before amblyopia screening could be recommended as a routine component of a community health surveillance program--an adequate description of the potential consequences of an individual developing amblyopia has yet to be provided and the natural history of the condition and factors that determine the effectiveness of treatment have yet to be fully described. While there is the promise of technology that satisfies specific test requirements, this still needs to be trialed in community settings and community trials are required before it will be possible to determine whether the costs that will be incurred in carrying out routine screening and in providing the resources for treatment are warranted. In conclusion, the development of new and possibly more effective technology for screening is only part of the answer to the amblyopia question. While superficially this technology makes screening for amblyopia a possibility, we do not know at this stage whether or not it is appropriate.

Amblyopia↗

Induction of the cytochrome P450 3A subfamily in rat liver correlates with the binding of inducers to a microsomal protein.

The specific binding of the archetypal cytochrome P450 3A subfamily (CYP3A) inducer dexamethasone is examined in microsomal fractions since rat and human liver CYP3A is induced by glucocorticoids through a mechanism which is apparently independent of the cytosolic glucocorticoid receptor. Dexamethasone binds in a specific and saturable manner to microsomes with an affinity constant (Kd) of 59 +/- 12.9 nM which compares to a Kd of 2.3 +/- 0.17 nM in cytosol. The total receptor concentrations ([LR]emax) in microsomes and cytosol are 9.5 +/- 1.67 pmols/mg protein and 410 +/- 167 fmol/mg protein respectively. The microsomal binding of dexamethasone is antagonised by several transcriptional and/or post-transcriptional CYP3A inducers with decreasing potency pregnenolone 16 alpha carbonitrile > metyrapone > phenobarbitone. Troleandomycin, which indirectly induces CYP3A1 in vivo and by protein stabilisation, does not antagonise the binding of dexamethasone in microsomes. The transcriptional and/or post-transcriptional induction of CYP3A may therefore be associated with the interaction of inducers with a microsomal protein.

Animals↗

Induction of rat hepatic glucocorticoid-inducible cytochrome P450 3A by metyrapone.

The bipyridyl compound metyrapone is a potent inhibitor of cytochromes P450, a gene superfamily of haemoproteins involved in the metabolism of many xenobiotics as well as endogenous compounds such as steroid hormones. Administration of metyrapone to male rats induces the expression of the cytochrome P450 sub-family 3A (CYP3A). In order to determine whether metyrapone was causing the induction of CYP3A by blocking endogenous glucocorticoid metabolism, CYP3A levels were examined in rat hepatocytes cultured in serum-free medium supplemented with hydrocortisone 21-hemisuccinate plus or minus metyrapone. Western blotting indicated that metyrapone alone induces CYP3A and that hydrocortisone 21-hemisuccinate is ineffective. However, hydrocortisone 21-hemisuccinate enhanced the levels of CYP3A induced by metyrapone. In contrast, glucocorticoid-inducible tyrosine aminotransferase (TAT) activity was unaffected by metyrapone but metyrapone enhanced the levels induced by hydrocortisone 21-hemisuccinate. An examination of the metabolism of hydrocortisone by rat hepatocytes in vitro indicated that metyrapone perturbed the catabolism of hydrocortisone under conditions which give rise to an enhancement of hydrocortisone 21-hemisuccinate and hydrocortisone-dependent TAT induction. However, evidence is presented to suggest that such a perturbation of hydrocortisone metabolism could not account for the glucocorticoid potency amplifying property of metyrapone. Thus the induction of CYP3A and the enhancement of glucocorticoid-mediated TAT induction appears not to be associated with any perturbation in glucocorticoid metabolism but with some other as yet undefined mechanism(s).

Animals↗

Alteration of transcription factor mRNAs during the isolation and culture of rat hepatocytes suggests the activation of a proliferative mode underlies their de-differentiation.

The commonly observed loss of liver specific phenotype regularly described in rat hepatocyte culture is typified by the loss of total cytochrome P450 (CYP) content and the altered abundance of CYP mRNAs. The current work shows that these changes are preceded by the induction of the mRNA encoding the transcription factor c-jun during the hepatocyte isolation procedure. Then as the hepatocytes attach to the substratum the induced expression of c-jun subsides and two patterns of CYP mRNA loss are observed. The mRNAs encoding CYPs 2C11, 2C13, 2E1, 3A1, 3A2 and 4A1 continuously decline while CYP 1A2, 2A1/2 and 2B1/2 mRNAs are temporarily stabilised for 2 to 2.5 hours at a reduced level before declining further. The loss of CYP1A2 and 2B1/2 mRNAs parallels the loss of the mRNAs encoding the liver specific transcription factors C/EBP alpha and HNF-1. The early and rapid increase in c-jun mRNA followed by a decline in C/EBP alpha mRNA are characteristic of the changes in the expression of these transcription factor mRNAs following the stimulation of hepatocyte proliferation after partial hepatectomy. The finding that the rate of loss of total P450 following partial hepatectomy parallels that in rat hepatocyte culture suggests that the commonly employed hepatocyte isolation procedure "primes" the normally quiescent hepatocytes to enter the cell cycle and de-differentiate especially as both systems lose the major constitutively expressed CYP2C11 isozyme.

Animals↗

Evidence that the loss of rat liver cytochrome P450 in vitro is not solely associated with the use of collagenase, the loss of cell-cell contacts and/or the absence of an extracellular matrix.

Two methods avoiding the widespread technique of collagenase perfusion have been employed to study the regulation of total cytochrome P450 content in rat hepatocyte culture. One technique required the perfusion of the liver with the chelating agent EDTA to dissociate the parenchymal cells prior to culture. Over a period of 48 hr, cultured hepatocytes isolated by EDTA perfusion showed comparable losses of cytochrome P450 as cells isolated by perfusion with collagenase. The second technique involved the culture of 210-240 microns thick "precision cut" liver slices. The results presented here indicate that the liver slices remain viable for 24 hr of culture, but that liver slices also lose their cytochrome P450 content at a comparable rate to collagenase prepared cells in culture. Collectively the results suggest that there is not a direct causal relationship between the loss of cytochrome P450 and one or a combination of the use of collagenase; the loss of cell-cell contacts and the absence of an extracellular matrix.

Animals↗

[The possible nephrotoxicity of a bituminous coal dermatologic agent].

Nephrotoxic effects are discussed as a possible risk of dermatological coal tar preparations. Therefore, we have performed a renal tolerance study with a modern coal tar preparation for the scalp, Berniter. 15 healthy volunteers, randomly subjected to 3 different modes of application, applied the preparation: twice weekly (mode I) or daily (mode II) for a period of 8 weeks. In both modes, application time was 15 min. In mode III, the preparation was used under occlusion for 30 min every second day for a period of 4 weeks. Before, during and after treatment, renal functions and urinary phenol levels were assayed. No pathological change or impairment of renal functions was detected. A relationship between urinary phenol content and the coal tar treatment was not observed, either. We conclude that the coal tar preparation investigated here has no nephrotoxic properties.

Administration, Topical↗

Replicative transformation of the filamentous fungus Ashbya gossypii with plasmids containing Saccharomyces cerevisiae ARS elements.

We have developed a transformation system for the filamentous ascomycete fungus Ashbya gossypii. Mycelial protoplasts were transformed to geneticin-resistance with plasmids containing the Escherichia coli kanamycin-resistance gene as a selectable marker and autonomously replicating sequences (ARS) from Saccharomyces cerevisiae (ARS1, 2 mu ARS). Transformation frequencies of up to 63 transformants per microgram of plasmid DNA were obtained. The transformants were unstable under nonselective conditions. Southern analysis of DNA separated by conventional and pulsed-field-gel electrophoresis showed that the transforming DNA was present as autonomously replicating plasmid. Plasmid integration into chromosomal DNA was not detected. We concluded that the S. cerevisiae ARS elements are functional in A. gossypii, since vectors lacking such elements did not yield transformants.

Ascomycota↗

[Inhibition of testosterone metabolism by 17-alpha-estradiol in rat liver slices].

Inhibition of the Testosterone Metabolism in Rat Liver Slices by 17 alpha-Estradiol. The influence of 17 alpha-estradiol (CAS 57-91-0), a hormonally almost inactive isomer of physiological 17 beta-estradiol, on the metabolism of [14C]-labeled testosterone in rat liver slices was investigated. The analysis of extracts from incubates (3.0 ml medium, 100 mg liver slices, 416 nmol [14C]-testosterone, 0.1-30 micrograms 17 alpha-estradiol, 37 degrees C, 30 min) by thin layer chromatography showed, that 30 micrograms of 17 alpha-estradiol inhibited the testosterone turnover in liver slices of female animals. The failure of a significant inhibitory effect in liver slices of male animals is attributed to the known, much smaller total turnover of testosterone in male liver cells. The amount of unchanged 4-en-3-oxo-steroid (testosterone and 4-androstene-3,17-dione) was increased by a factor of 2.65 and 2.25, respectively. With high probability, the inhibition was the result of a decreased hydrogenation of testosterone to dihydrotestosterone (DHT, 17 beta-hydroxy-5 alpha-androstan-3-one), catalyzed by 5 alpha-reductase, since the production rates of DHT and the DHT-transformation metabolites (5 alpha-androstane-3 alpha,17 beta-diol and 5 alpha-androstane-3,17-dione) were significantly lowered (factors: 0.16, 0.61, 0.61, respectively). In further experiments 17 beta-estradiol and 17 alpha-ethinylestradiol could be shown to inhibit the testosterone turnover in liver slices of female rats, too, but to a lower extent that 17 alpha-estradiol (relative inhibitory effects: 17 alpha-estradiol:17 beta-estradiol:17 alpha-ethinylestradiol = 100 : 73 : 58).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A non-cholinergic function for acetylcholinesterase in the substantia nigra: behavioural evidence.

Acetylcholinesterase is released from substantia nigra neurons, independently of cholinergic transmission. In an attempt to discover the functional significance of this phenomenon, the behavioural effects of injecting acetylcholinesterase into one substantia nigra of the rat were investigated. Following a single injection of the enzyme, intraperitoneal amphetamine evoked circling behaviour in a direction away from the side of injection. Purified acetylcholinesterase with a similar electrophoretic mobility to the endogenous secreted form, was far more potent in eliciting circling than much higher activities of commercial enzyme, consisting of several molecular species of acetylcholinesterase. Similar infusions of butyrylcholinesterase did not induce circling. Depending upon the amount of enzyme initially given, the behavioural effects of a single injection of acetylcholinesterase persisted for up to thirty days. During this period apomorphine, administered systemically, induced transient circling towards the acetylcholinesterase-treated side. It is concluded that secreted acetylcholinesterase has a functional significance within the substantia nigra, independent of cholinergic transmission. This released enzyme could exert long-term changes in the activity of the nigrostriatal system, involving modification of dopamine striatal receptors.

Acetylcholine↗

Oral health of adolescent and adult Australian aborigines.

A pilot survey of oral health included 83 adolescent and adult Aborigines (41 M, 42 F, range 16--70 years, mean age 37.3 years), resident in fringe settlements around the far western New South Wales towns of Brewarrina and Walgett (fluoride in water less than or equal to 0.02--0.26 parts/10(6)). Dental caries prevalence (mean DIMFT per person) increased from 17.1 at 20 years to 10.7 at 35 years and declined to 14.6 by the age of 50 years and over. Oral hygiene (OHI) was poor overall and deteriorated with age. Periodontal status (PI) was significantly correlated with the presence of debris (DI) and calculus (CI). The mean PI increased from 1.7 at 20 years to 4.8 at 43 years and over. Tooth mortality reached 75% by the age of 43 years. Prosthetic needs were correspondingly high, but 95% of denture requirements were unmet. No evidence of effective or sustained oral health care was seen; 38% of subjects needed emergency treatment.

Adolescent↗