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C W Davis

Publications and source records attributed to C W Davis.

At least 73 records · Page 4Linked to original sources

Cyclic GMP-dependent and cyclic AMP-dependent protein kinases, protein kinase modulators and phosphodiesterases in arteries and veins of dogs. Distribution and effects of arteriovenous fistula and arterial occlusion.

Possible involvement of cyclic GMP-dependent and cyclic AMP-dependent protein kinases, protein kinase modulators and cyclic nucleotide phosphodiesterases in functions of vascular tissues were investigated in the dog. All of the above activities, localized in the smooth muscle-rich inner layer of the blood vessels, were found to be higher in the arteries than in the veins. The peripheral arteries were disproportionately richer in cyclic GMP-dependent protein kinase (as indicated by high ratios of cyclic GMP-dependent to cyclic AMP-dependent protein kinase) than were the veins, with the exception of the pulmonary artery, an atypical arterial tissue exposed to low blood pressure. Interestingly, the protein kinase ratio for the aorta, an artery with no significant role in blood pressure regulation, was not higher than that for the vena cava. Creation of femoral arteriovenous fistulae in the dogs led to preferential reductions in the cyclic GMP-dependent enzyme activity both in the proximal and distal arteries, whereas it was elevated in the stressed vein distal to the anastomotic site. The cyclic GMP-dependent enzyme was preferentially reduced in the saphenous artery distal to occlusion. Changes in the cyclic GMP-dependent enzyme activity appeared to precede gross atrophy or hypertrophy of the vessels. It is suggested that the vascular cyclic GMP-dependent protein kinase may be closely related to peripheral resistance and its regulation.

3',5'-Cyclic-AMP Phosphodiesterases↗

Guanosine cyclic monophosphate-dependent protein kinase from foetal calf heart. Purification, general properties and catalytic subunit.

Cyclic GMP-dependent protein kinase was purified from foetal calf hearts, and its general properties and subunit structure were studied. The enzyme was purified over 900-fold from the heart extract by pH 5.3-isoelectric precipitation, DEAE-cellulose chromatography, Sephadex G-200 filtration and hydroxyapatite treatment. The purified myocardial enzyme, free from cyclic AMP-dependent protein kinase contamination, exhibited an absolute requirement of stimulatory modulator (or crude modulator containing the stimulatory modulator component) for its cyclic GMP-stimulated activity. Inhibitory modulator (protein inhibitor) of cyclic AMP-dependent protein kinase could not stimulate nor inhibit the cyclic GMP target enzyme. The enzyme had Ka values of 0.013, 0.033 and 3.0 micronM for 8-bromo cyclic GMP, cyclic GMP and cyclic AMP respectively. The cyclic GMP-dependent enzyme required Mg2+ and Co2+ for its activity, with optimal concentrations of about 30 and 0.5 mM respectively. The pH optimum for the enzyme activity ranged from 6 to 9. Histones were generally effective substrate proteins. The enzyme exhibited a greater affinity for histones than did the cyclic AMP-dependent class of protein kinase. The holoenzyme (apparent mol.wt. 150 000) of the myocardial cyclic GMP-dependent protein kinase was dissociated into a cyclic GMP-independent catalytic subunit (apparent mol.wt. 60 000) by cyclic GMP and histone. The catalytic subunit required the stimulatory modulator for its activity, as in the case of the holoenzyme in the presence of cyclic GMP.

Animals↗

A biochemical concept of cellular production of paramyxoviruses.

Previous analysis in vitro of the interaction between some paramyxoviruses and the chicken embryo has indicated that the cell most productive (MP) of virus is the heart cell whereas the liver cell is least productive (LP). More superior production of virus results from more efficient release of virions, whereas the kinetics of viral attachment and penetration and the production of interferon are similar for both types of cell. Since plasma membrane lipids may represent the structural key to enveloping and release of paramyxovirions, the lipid composition of MP and LP cells and purified plasma membranes was investigated. The plasma membranes of heart cells contain a high molar ratio of cholesterol to phospholipid (1.66 vs. 0.55), more phosphatidylethanolamine (34.8% vs. 24.0% of total phospholipid), and less phosphatidylcholine (39.7% vs. 55.0% of total phospholipid) than the plasma membranes of liver ce-ls. The fatty acids of heart and liver cellular plasma membranes are similar. The glycosphingolipid components of heart and liver cells are also the same, as is the content of gangliosides (6.18 mug vs. 6.49 mug neuraminic acid/mg protein) in these cells, but the heart cell contains one-fifth as much total cerebroside (34.3 mg vs. 174.3 mug cerebroside/mg protein), indicating a greater ganglioside to neutral glycolipid ratio for the heart cell. Comparison of these data with the monkey/hamster (MP/LP) renal cell-parainfluenza SV5 virus system of Klenk and Choppin suggests that essential molecular determinants of superior cellular production of paramyxoviruses are the relative concentration of phosphatidylethanolamine and the molar ratio of cholesterol to phospholipid in the plasma membrane.

Animals↗

Ontogenetic changes in levels of phosphodiesterase for adenosine 3':5'-monophosphate and glucosine 3':5'-monophosphate in the lung, brain and heart from guinea pigs.

Changes in tissue levels of the low Km phosphodiesterase for adenosine 3':5'-monophosphate (cyclic AMP) and guanosine 3':5'-monophosphate (cyclc GMP) in the lung, liver, heart and brain from developing guinea pigs were studied. It was found that the contents of the soluble (cytosol) phosphodiesterase for both cyclic AMP and cyclic GMP were higher in the lung from the fetus than from the neonate and adult. The ontogenetic changes seen in the liver were qualitatively similar to thos in the lung with respect to cyclic GMP hydrolysis, while a reversed pattern of change was noted in the brain. The level of cyclic AMP phosphodiesterase was highest in the fetal heart. Throughout the fetal stage, the levels of the enzyme for cyclic GMP hydrolysis were higher than those for cyclic AMP in the lung. At or around birth, a reversal in the relative levels of the two enzymes took place; two days after birth, the level of the enzyme for cyclic AMP was 2-3times higher than thos for cyclic GMP. Kinetic analysis showed that phohphodiesterases from extracts of the lung from all developmental stages of guinea pigs had the same Km (2.6 muM) for cyclic AMP and the same Km (6.6 muM) for cyclic GMP. The relative values of V, based on assays using the same amount of enzyme protein, in decreasing order, were fetus greater than neonate greater than adult. The present findings suggest that metabolism of the two cyclic nucleotides may be closely related to developmental processes of the tissues. Moreover, the actions involving cyclic GMP may be more predominent in the fetal lung and adult brain.

3',5'-Cyclic-AMP Phosphodiesterases↗

Purification and general properties of guanosine 3':5'-monophosphate-dependent protein kinase from guinea pig fetal lung.

Guanosine 3':5'-monophosphate (cyclic GMP)-dependent protein kinase was purified from the guinea pig fetal lung, a tissue shown to be the richest in this enzyme in all mammalian sources examined, and its general properties studied. The enzyme was purified 150-fold from crude extract by steps of pH 5.4 isoelectric precipitation, Sephadex G-200 filtration, hydroxylapatite treatment and DEAE-cellulose chromatography. The purified enzyme, free from contamination with adenosine 3':5'-monophosphate (cyclic AMP)-dependent protein kinase, had a specific activity at least equivalent to 600-fold purification of the enzyme from the adult lung. The pulmonary enzyme exhibited an absolute requirement of protein kinase modulator (prepared from various mammalian tissues with an exception of skeletal muscle) for its activity. Inhibitor protein of cyclic AMP-dependent protein kinase purified from rabbit skeletal muscle could not stimulate nor inhibit the cyclic GMP target enzyme, indicating the factors from mammalian sources regulating the two classes of protein kinases may not be the same. The enzyme had Ka values of 1.3 times 10(-8) and 3.3 times 10(-8) M for 8-bromo cyclic GMP and cyclic GMP, respectively, compared to 3.0 times 10(-6) M for cyclic AMP. Cyclic GMP lowered the Km of the enzyme for ATP from 6.3 times 10(-5) M in its absence to 2.1 times 10(-5) M in its presence, accompanied by an approximate doubling of the Vmax. The molecular weight of the enzyme (assayed by its catalytic and cyclic GMP-binding abilities) was estimated to be 123,000, corresponding to a sedimendation coefficient of 7.06 S, by means of sucrose density gradient ultracentrifugation. The cyclic GMP-dependent enzyme required Mg2+ and Co2+ for its activity with optimal concentrations of about 30 and 0.7 mM, respectively. The maximal activity seen in the presence of Mg2+, however, was nearly twice as high as that seen in the presence of Co2+. Histones were generally effective substrates for the enzyme, whereas protamine, casein, phosvitin, phosphorylase kinase, and activator protein of phosphodiesterase were not. The cyclic GMP-dependent enzyme exhibited a greater affinity for histones than did the cyclic AMP-dependent enzyme in the presence of Mg2+.

Animals↗

In vitro analysis of experimental avian viral myocarditis.

The cardiotropism of mumps virus in ovo was reproduced in vitro in a comparative study of the replication of mumps virus in cultivated heart, lung, and liver cells from 11-to 19-day-old chicken embryos. The increased proportion of virus-producing cells in the heart was shown not to be due to greater adsorption of virus to heart cells. Neither interferon nor other cellular inhibitory products were responsible for the lower level of production of virus by lung and liver cells. The proportion of cells producing virus in relation to the amount of virus adsorbed and the proportion of hemadsorbing cells that released infectious virus were greater in heart cells; this finding suggested more efficient viral release in the heart than at the other sites. Inhibition of protein synthesis by puromycin after infection rapidly stimulated the production of mumps virus only in liver cells. Thus a relatively late stage in viral synthesis may be attenuated in the less susceptible liver cells, and events late in viral synthesis may determine organ-related differences in the multiplication of mumps virus in ovo.

Amino Acids↗

Paramyxovirus-avian cell relationship: discrepant impact of 6-azauridine on virus production by susceptible and less susceptible cells.

The replication of mumps virus in susceptible chicken embryonic heart cells was escalated by daily treatment of cultures with 6-azauridine (6-AU). On the other hand, virus production by less susceptible liver cells was depressed by 6-AU. The population of infected susceptible cells was not increased, but the release of virus by infected susceptible cells was enhanced 20-fold by 10 mug of 6-AU per ml. Less susceptible cells, which incorporated less ribonucleic acid and protein precursor than susceptible cells, sustained a constant level of viral release during 6-AU treatment; however, the number of infected less susceptible cells underwent substantial decline.

Animals↗