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Biomedical subjects

P J Davis

Publications and source records attributed to P J Davis.

At least 19 recordsLinked to original sources

Hexose-specific inhibition in vitro of human red cell Ca(2+)-ATPase activity.

In a concentration-dependent manner (5.5-27.5 mmol/l), D-glucose incubated in vitro with human erythrocyte membranes at 37 degrees C for 1 h inhibited membrane Ca(2+)-ATPase activity by up to 75%. The IC50 was 11 mmol/l. L-Glucose was ineffective, as were 3-O-methylglucose, 2-deoxyglucose, sorbitol and myo-inositol. In contrast, D-fructose decreased Ca(2+)-ATPase activity nearly as effectively as D-glucose and mannose and galactose at 11 mmol/l were less than 50% as effective as D-glucose. Tunicamycin (12 pmol/l), but not 10 mmol/l aminoguanidine, progressively antagonized in vitro the D-glucose effect on the enzyme. Erythrocyte membrane Ca(2+)-ATPase activity may be regulated by glycosylation, rather than nonenzymatic glycation.

Calcium-Transporting ATPases

Vocalization and marked pressor effect evoked from the region of the nucleus retroambigualis in the caudal ventrolateral medulla of the cat.

It is well established that the nucleus retroambigualis (NRA) of the cat contains a population of expiratory-related neurons. We report here that in the unanesthetized, decerebrate cat, microinjections of 300-900 pmol of D,L-homocysteic acid within the NRA evoked excitation of laryngeal as well as expiratory muscles, and often pressor responses. Moreover, vocalizations, which did not sound like normal feline vocalizations (i.e., hiss, howl, mew, growl), were evoked from a restricted region of the NRA, 1-3 mm caudal to the obex. The results indicate that in addition to its role in expiration: (i) the NRA plays an important role in the control of laryngeal muscles and the production of vocalization; and (ii) that neurons in the NRA region can modulate arterial pressure.

Animals

Stereochemical requirements for the modulation by retinoic acid of thyroid hormone activation of Ca(2+)-ATPase and binding at the human erythrocyte membrane.

Physiological concentrations of retinoic acid can block the activation of human erythrocyte Ca(2+)-ATPase in vitro by thyroid hormone [Smith, Davis & Davis (1989) J. Biol. Chem. 264, 687-689]. The present studies were undertaken to ascertain the nature of this blockade. Two binding sites for L-thyroxine (T4) were demonstrated on washed erythrocyte membranes; the high-affinity site had a Kd value of 2.7 x 10(-10)M and a Bmax. of 76 fmol/mg of protein. The lower-affinity site possessed a Kd of 1 x 10(-8) M. Retinoic acid was as potent a displacer of radiolabelled T4 as was the unlabelled hormone. Certain retinoic acid analogues with either ring or fatty acid side chain modifications retained some ability to displace [125I]T4 binding and to block iodothyronine activation of Ca(2+)-ATPase. The side chain terminal carboxyl group was essential for full activity of the retinoic acid molecule. Its absence or replacement with an ethylsulphone group rendered the molecule considerably less active in the ATPase model. Retinol, 13-cis-retinoic acid, benzene-substituted all-trans-retinoic acid and polyprenoic acid all failed to influence iodothyronine binding or to block activation of Ca(2+)-ATPase by T4. There was good agreement between the ability of an analogue to displace [125I]iodothyronine binding and its ability to inhibit the T4-dependent activation of the Ca(2+)-ATPase. It would appear from these observations that retinoic acid can modulate the activation of erythrocyte membrane Ca(2+)-ATPase by thyroid hormone through a mechanism which involves displacement of iodothyronine from binding sites. These activities apparently derive from both the ring structure and the fatty acid side chain of the retinoic acid molecule.

Calcium-Transporting ATPases

Cloning and sequencing of the matrix protein (M) gene of turkey rhinotracheitis virus reveal a gene order different from that of respiratory syncytial virus.

Several biochemical properties and the sequence of the fusion glycoprotein (F) have indicated that turkey rhinotracheitis virus (TRTV) is a pneumovirus, subfamily Pneumovirinae of the Paramyxoviridae family. As TRTV was known to generate polycistronic mRNAs, cDNA was generated from TRTV strain UK/3BV/85-infected Vero cell mRNAs using an oligonucleotide primer corresponding to a region of the F gene. Sequencing of four cDNAs revealed that the gene adjacent to the beginning (3' end) of the F gene was that for the matrix (M) protein, i.e., that TRTV had the partial gene order 3'-M-F-5'. This was unexpected as human respiratory syncytial (RS) virus, the type species of the genus Pneumovirus, has the partial gene order 3'-M-SH-G-F-5', where SH and G are the small hydrophobic protein and attachment glycoprotein, respectively. Instead TRTV resembled the Morbillivirus and Paramyxovirus genera of the Paramyxoviridae (subfamily Paramyxovirinae) which have the partial gene order 3'-M-F-5'. Two further oligonucleotides, one corresponding to a sequence near the end of the M gene and the other (oligo B) to a sequence near the beginning of the F gene, with their 5' ends spaced 300 nucleotides apart on the basis of the cDNA sequence, were used in a polymerase chain reaction (PCR) using genomic RNA as template. Only a PCR product of 0.3 kb was obtained. The same sized product was also obtained using these oligonucleotides and genomic RNA from three other TRTV strains (SA/91/78, UK/8544/85, and SA/2381/88) which had been grown in chicken tracheal organ cultures. In addition PCR was performed using genomic RNA from TRTV-3BV and SA/2381/88 with oligo B and another oligonucleotide near the 5' end of the gene upstream from M, spaced 1141 nucleotides apart on the basis of the sequence data. Only a 1.14-kb PCR product was obtained. Larger products would have been expected if another gene had been situated between M and F. The absence of such larger products, plus the demonstration that infected cells contained M-F dicistronic mRNAs, supported the conclusion that in the TRTV genome the M gene is adjacent to the F gene in the order 3'-M-F-5'. The 5' termini of the M and F mRNAs were confirmed by mRNA mapping. The TRTV M gene encoded a protein of 254 amino acids, very similar to that of RS virus (256 residues; 37% amino acid identity) but very different from that of the morbilliviruses and paramyxoviruses (approximately 350 residues).(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

Production of a toxic, novel mammalian metabolite of N-methylcarbazole predicted by a fungal cell model of mammalian metabolism.

The formation of N-hydroxymethylcarbazole (NHMC), carbazole, 1-hydroxy-N-methylcarbazole, 2-hydroxy-N-methylcarbazole, and 3-hydroxy-N-methylcarbazole as products of mammalian liver microsomal metabolism of N-methylcarbazole (NMC) has been documented by several investigators. In previous studies in our laboratory, the fungus Cunninghamella echinulata (ATCC 9244) produced two new metabolites, 3-hydroxy-N-hydroxymethylcarbazole (3-OH-NHMC), and 3-hydroxycarbazole (3-OH-carbazole), in addition to the known mammalian metabolites, NHMC and carbazole. One of the two novel metabolites isolated from the microbial models, 3-OH-NHMC, was also identified and characterized in rat liver microsomes by analytical (HPLC) and spectral (UV and NMR) comparisons with a reference standard. The two metabolites, 3-OH-NHMC and 3-OH-carbazole, were shown to be cytotoxic to cultured rat hepatocytes as assessed by lactate dehydrogenase (LDH) leakage and neutral red (NR) uptake. These studies demonstrate the prospective potential of microbial models for predicting the formation of metabolites from drugs and other xenobiotics in mammalian systems.

Animals

The alpha 1-adrenergic receptor in human erythrocyte membranes mediates interaction in vitro of epinephrine and thyroid hormone at the membrane Ca(2+)-ATPase.

Membrane Ca(2+)-ATPase activity was stimulated in vitro separately by T4 (10(-10) M) and by epinephrine (10(-6) M). In the presence of a fixed concentration of T4, additions of 10(-8) and 10(-6) M epinephrine reduced the T4 effect on the enzyme. beta-Adrenergic blockade with propranolol (10(-6) M) prevented stimulation by epinephrine of Ca(2+)-ATPase activity, but did not prevent the suppressive action of epinephrine on T4-stimulable Ca(2+)-ATPase. In contrast, alpha 1-adrenergic blockade with unlabelled prazosin restored the effect of T4 on Ca(2+)-ATPase activity in the presence of epinephrine. Like propranolol, prazosin prevented enhancement of enzyme activity by epinephrine in the absence of thyroid hormone. Neither prazosin nor propranolol had any effect on the stimulation by T4 of red cell Ca(2+)-ATPase in the absence of epinephrine. Analysis of radiolabelled prazosin binding to human red cell membranes revealed the presence of a single class of high-affinity binding sites (Kd, 1.2 x 10(-8) M; Bmax, 847 fmol/mg membrane protein). Thus, the human erythrocyte membrane contains alpha 1-adrenergic receptor sites that are capable of regulating Ca(2+)-ATPase activity.

Calcium-Transporting ATPases

Induction and maintenance characteristics of anesthesia with desflurane and nitrous oxide in infants and children.

To determine the induction and maintenance characteristics of desflurane in pediatric patients, the authors anesthetized 206 infants and children aged 1 month to 12 yr with nitrous oxide plus desflurane and/or halothane in oxygen. Patients were assigned to one of four groups: anesthesia was 1) induced and maintained with desflurane after premedication with an oral combination of meperidine, diazepam, and atropine; 2) induced and maintained with desflurane; 3) induced with halothane and maintained with desflurane; or 4) induced and maintained with halothane. An unblinded observer recorded time to loss of consciousness (lid reflex), time to intubation, and clinical characteristics of the induction and maintenance of anesthesia. Moderate-to-severe laryngospasm (49%) and moderate-to-severe coughing (58%) occurred frequently during induction of anesthesia with desflurane; the incidence of these was not altered by premedication. In contrast, laryngospasm and coughing were rare during induction of anesthesia with halothane. In unpremedicated patients, time to loss of lid reflex (mean +/- SD) was similar for desflurane (2.4 +/- 1.2 min) and halothane (2.1 +/- 0.8 min). During induction of anesthesia, before laryngoscopy and intubation, mean arterial pressure less than 80% of baseline was more common with halothane; heart rate and mean arterial pressure greater than 120% of baseline were more common with desflurane. Intraoperatively, heart rate greater than 120% of baseline was more common with desflurane; blood pressures were similar for the two anesthetics. The authors conclude that the high incidence of airway complications during induction of anesthesia with desflurane limits its utility for inhalation induction in pediatric patients. Anesthesia can be safely maintained with desflurane if induced with a different anesthetic.

Anesthesia, Inhalation

Long-term potentiation is lost in aged rats but preserved by calorie restriction.

Recordings of synaptic population responses, post-tetanic potentiation (PTP) and long-term potentiation (LTP) were made from area CA1 in hippocampal slices from ad libitum-fed rats at about 2 and 24 months of age, and also in animals at about 24 months of age that had been restricted to 60% of the caloric intake of control animals since weaning. Both PTP and LTP were greatly reduced in the old ad-lib animals. Calorically-restricted rats at about 24 months of age showed hippocampal responses with initial peak amplitudes more like those of 2-month controls than the ad-lib animals at 24 months. These observations suggest that calorie restriction preserves nervous-system functions, including indicators of plasticity such as LTP, which are otherwise lost in aging.

Aging

Sequence and in vitro expression of the M2 gene of turkey rhinotracheitis pneumovirus.

Negative-stranded virion RNA and oligonucleotide primers complementary to fusion (F) protein gene sequences were used to generate cDNA clones, revealing that the gene 5'-proximal to the F protein corresponded to the M2 (22K) gene, as in respiratory syncytial (RS) virus. The transcription start signal, GGGACAAGU, was identical to that of the F and matrix (M) proteins of turkey rhinotracheitis virus (TRTV). There were two sequences with the potential to function as transcription termination/poly(A) signals, located at nucleotides 751 to 762 and 777 to 787; 15 clones derived from mRNA indicated that the first of these sequences formed the major signal. Part of the next downstream (5') gene was sequenced; unlike mammalian pneumoviruses the TRTV M2 gene did not overlap the beginning of the 5'-proximal gene. Northern blotting indicated that infected Vero cells contained less M2 mRNA than F mRNA and that about half of the M2 mRNA was present as a F-M2 dicistronic mRNA. The M2 gene contained two overlapping open reading frames (ORFs 1 and 2), as with RS virus. ORF 1 comprised 558 nucleotides with the coding potential for a 186 amino acid polypeptide, M(r) 20959, eight or nine residues shorter than for human RS virus strains. The overall amino acid identity was 40%, the N-terminal one-third of the proteins sharing 62% of residues, the remainder 29%. A hydropathy plot of the TRTV M2 protein had close similarity to that of the M2 or RS virus. The protein was predicted to have a basic character with no N-terminal signal sequence or other major highly hydrophobic sequences. In vitro translation of a transcript comprising both ORFs 1 and 2 produced a single product of apparent M(r) 23000, corresponding to the M2 product of ORF 1. Site-directed mutagenesis confirmed that this product was derived from ORF 1 and that frameshifting was not involved. The second ORF was expressed only from a transcript which lacked the AUG codons of ORF 1 and, although occupying a similar position to that in the RS virus M2 gene, had virtually no amino acid identity in its 73 residue length and was approximately 25% shorter than the corresponding RS virus ORF 2. The hydropathy plot of the potential products of the second ORFs of TRTV and RS virus showed little resemblance. Taken together these results suggest that ORF 2 is unlikely to be expressed in vivo.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence

n-3 and n-6 polyunsaturated fatty acids have different effects on acyl-CoA:cholesterol acyltransferase in J774 macrophages.

The effects of incubating J774 mouse macrophages with different fatty acids on cholesterol esterification were investigated. In cells incubated with n-3 polyunsaturated fatty acids, the rate of cholesterol esterification was significantly reduced compared with cells incubated with n-6 polyunsaturated fatty acids or with oleic acid. This change in cholesterol esterification appears to be the result of reductions in the activity of acyl-CoA:cholesterol acyltransferase (ACAT) in the endoplasmic reticulum of the macrophages incubated with the n-3 polyunsaturated fatty acids. No differences in microsomal cholesterol were observed among cells incubated with different fatty acids. However, cellular cholesterol levels were lower in cells incubated with n-3 polyunsaturated fatty acids. In microsomes from cells incubated with n-3 polyunsaturated fatty acids, both the Km and the Vmax of ACAT were lower than in microsomes from cells incubated with n-6 fatty acids or oleic acid. These findings may explain some of the reduction in atherosclerotic lesions that are observed with dietary fish oils that contain high levels of n-3 polyunsaturated fatty acids.

Animals

Calorie restriction decreases microalbuminuria associated with aging in barrier-raised Fischer 344 rats.

Renal function as a sensitive biomarker of aging has been studied in specific pathogen-free (SPF) Fischer 344 rats (n = 211), and results are presented according to animal age (5, 8, 12, 18, 24 mo), sex, and diet (ad libitum vs. 40% calorie restriction). Plasma creatinine concentration, endogenous creatinine clearance, total protein excretion, and albumin excretion were measured. Kidney histology was evaluated by light microscopy. In both calorie-restricted and ad libitum-fed animals, kidney weight (KW) and body weight (BW) showed parallel changes with age. The KW-to-BW ratio was unaffected by age in all groups. There was no alteration in plasma creatinine concentration as a function of age or diet. In these SPF animals there was also no change in glomerular filtration rate with age. In animals fed ad libitum, albumin and protein excretion increased with age (females: 0.39 +/- 0.05 at 5 mo vs. 7.4 +/- 2.6 mg protein.24 h-1.g KW-1 at 24 mo; males: 4.1 +/- 0.6 at 5 mo vs. 15 +/- 3 mg protein.24 h-1.g KW-1 at 24 mo). The higher protein excretion rate in all males at 5 mo reflected the excretion of sex-dependent low-molecular-weight proteins that commenced with sexual maturation. Calorie restriction prevented the age-dependent increase in total protein excretion. Kidney histopathology was positively correlated with total protein and albumin excretion. Microalbuminuria preceded the development of lesions detectable by light microscopy. These observations support the concept that microalbuminuria in this model is a sensitive and early biomarker of nephropathy that can be monitored easily and noninvasively.

Aging

Inspiratory speech as a management option for spastic dysphonia. Case study.

A case study is reported of a subject who has used inspiratory speech (IS) for 6 years as a means of overcoming the communication problems of long-standing adductor spastic dysphonia (ASD). The subject was studied to confirm his use of IS, determine the mechanisms of its production, investigate its effects on ventilatory gas exchange, and confirm that it was perceptually preferable to ASD expiratory speech (ES). Results showed that the production and control of a high laryngeal resistance to airflow were necessary for usable IS. Voice quality was quantitatively and perceptually poor; however, the improved fluency and absence of phonatory spasm made IS the preferred speaking mode for both the listener and the speaker. Transcutaneous measurements of the partial pressures of oxygen and carbon dioxide in the subject's blood were made during extended speaking periods. These measurements indicated that ventilation was unchanged during IS, and that ventilation during ES was similar to the "hyperventilation" state of normal speakers. The reasons for the absence of phonatory spasm during IS are discussed, and the possibility of its use as a noninvasive management option for other ASD sufferers is addressed.

Airway Resistance

Incisor spacing: a sequential orthodontic restorative treatment approach.

For those patients presenting with one or more missing incisors, a sequential technique utilizing specific arch wires to level and align the irregular incisor teeth may be used. Auxiliary coil springs are then fitted to redistribute the space prior to the preparation of a prosthesis, the fabrication of which is facilitated by parallel and upright abutments. The space obtained allows esthetically proportioned pontics. Two cases that illustrate this technique are presented.

Anodontia

Structure-activity relationships of retinoids as inhibitors of calmodulin-dependent human erythrocyte Ca(2+)-ATPase activity and calmodulin binding to membranes.

All-trans retinoic acid displaces the binding of radiolabelled calmodulin to human erythrocyte membranes, and inhibits the activity of plasma membrane Ca(2+)-stimulated, Mg(2+)-dependent ATPase (Ca(2+)-ATPase; EC 3.6.1.3). This enzyme is dependent upon the action of calmodulin. In this study we explored the structural attributes of the retinoids which confer this ability to inhibit enzyme activity and calmodulin binding. With respect to the fatty acid side-chain, a clear requirement for inhibition is a trans-configuration of the polar end-group. The importance of the ring structure is indicated by the ineffectiveness of polyprenoic acid and a benzene ring retinoid analogue as inhibitors of enzyme activity and calmodulin binding. There was good correlation between the relative potencies of the analogues as enzyme inhibitors and as inhibitors of calmodulin binding. The ability of selected retinoid analogues, at physiological concentrations with respect to all-trans retinoic acid, to inhibit erythrocyte Ca(2+)-ATPase activity and membrane binding of calmodulin underscores the structurally specific effects of these compounds on the interaction of calmodulin with the membrane-bound enzyme.

Calcium-Transporting ATPases

Changes in glutathione and cellular energy as potential mechanisms of papaverine-induced hepatotoxicity in vitro.

The purpose of this study was to elucidate the mechanism of hepatotoxicity of papaverine hydrochloride (papaver) in vitro. To evaluate the role of metabolism in the toxicity of papaver, cells were pretreated with SKF-525A or benzyl imidazole (cytochrome P450 system inhibitors) for 24 hr at 1 x 10(-5) or 1 x 10(-4) M, respectively, or with phenobarbital sodium (cytochrome P450 system inducer) for 3 days at 2 x 10(-3) M. Cells then were exposed to concentrations of papaver ranging from 1 x 10(-5) to 1 x 10(-3) M for 4 to 24 hr. Cytotoxicity was evaluated by enzyme leakage (lactate dehydrogenase) and by energy status of the cells (ATP/ADP). The role of biological reactive intermediates in the toxicity of papaver was investigated by measuring changes in cellular reduced glutathione levels (GSH), by inhibiting GSH synthesis, and by determining the production of lipid peroxidation (LPX). Papaverine produced concentration- and time-dependent increases in enzyme leakage, with significant effects occurring by the 8-hr exposure period. Pretreatment with SKF-525A or benzyl imidazole increased enzyme leakage induced by papaver especially at a later time frame (24 hr), but pretreatment with phenobarbital delayed the onset of cytotoxicity from 8 to 12 hr. Decreases in GSH levels paralleled the time course of enzyme leakage. However, the administration of buthionine sulfoximine to cell cultures dramatically decreased the time by which papaver induced cellular injury (2 hr vs 8 hr). Changes in cellular energy status (ATP/ADP) were also detected earlier than enzyme leakage (4 hr vs 8 hr). In contrast, no significant production of lipid peroxidation was noted in papaver-treated cultures. We suggest that the mechanism of papaver-induced hepatotoxicity may be related to alterations in glutathione balance of the cells and to disruption of energy homeostasis.

Adenosine Diphosphate

Sex-dependent inhibition by retinoic acid of thyroid-hormone action on rabbit reticulocyte Ca2(+)-ATPase activity.

The interaction was examined in vitro of retinoic acid and thyroid hormone with rabbit reticulocyte Ca2(+)-ATPase. L-Thyroxine (T4) (0.1 nM) stimulated female-source Ca2(+)-ATPase activity (+21%; P less than 0.03) and inhibited male-source enzyme (-20%; P less than 0.05). Addition of retinoic acid (10 nM-1 microM) did not influence T4-inhibitable male-source Ca2(+)-ATPase, but caused a 52% loss of T4 effect on the female-source enzyme. Incubation of female-source membranes with testosterone caused the enzyme response to T4 and retinoic acid to become that of male-source membranes, and the male-source enzyme response was converted into the 'female' pattern by exposure to 17 beta-oestradiol. We postulate that a membrane-associated sex-steroid-dependent factor imparts a gender-specific interaction of thyroid hormone and retinoic acid on Ca2(+)-ATPase, and that ultimately the factor is shed during erythrocyte maturation.

Animals

Microbial models of mammalian metabolism: production of 3'-hydroxywarfarin, a new metabolite of warfarin using Cunninghamella elegans.

Warfarin, an anticoagulant and "metabolic probe" for cytochrome P-450 isozyme multiplicity, was metabolized by the fungus Cunninghamella elegans (ATCC 36112) to yield the previously unreported metabolite 3'-hydroxywarfarin. This metabolite was isolated from cell suspension cultures and characterized by analytical (HPLC) and spectral (EI-MS, PMR) comparisons with synthetic 3'-hydroxywarfarin.

Chromatography, High Pressure Liquid

Human pharmacokinetics of betaxolol enantiomers.

Betaxolol is a cardioselective beta-adrenergic antagonist effective in the treatment of hypertension. The pharmacokinetic behavior of betaxolol enantiomers in healthy male subjects is reported. Betaxolol enantiomer concentrations were determined in samples collected up to 48 h after iv administration of a 10-mg dose over a 30-min period by constant-rate infusion in 12 subjects and after oral administration of 40-mg capsules to eight of the same subjects. Betaxolol extracted from whole blood was reacted with (+) or (-)-1-naphthylethyl isocyanate. The resulting diastereoisomeric derivatives were analyzed by reversed-phase HPLC with fluorimetric detection. Following the iv dose, there were no differences in clearance or volume of distribution for the two enantiomers (15.6 +/- 4.4 versus 16.4 +/- 4.1 L/h and 342 +/- 62 versus 340 +/- 65 L, respectively). Likewise, after the oral dose, there were no differences in the maximum concentration, time of maximum concentration, bioavailability, or apparent absorption rate constant (41.0 +/- 8.6 versus 42.0 +/- 7.0 ng/mL, 214 +/- 59 versus 215 +/- 56 min, 0.89 +/- 0.26 versus 0.94 +/- 0.23, and 1.0 +/- 0.6 versus 1.2 +/- 0.6 h-1, respectively). Thus, the pharmacokinetic behavior of racemic betaxolol accurately reflects the behavior of betaxolol enantiomers in this subject group.

Administration, Oral