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D H Russell

Publications and source records attributed to D H Russell.

At least 19 recordsLinked to original sources

Laser desorption studies of high mass biomolecules in Fourier-transform ion cyclotron resonance mass spectrometry.

Matrix-assisted laser desorption ionization is used to obtain Fourier-transform ion cyclotron resonance mass spectra of model peptides (e.g., gramicidin S, angiotensin I, renin substrate, melittin, and bovine insulin). Matrix-assisted laser desorption ionization yields ions having appreciable kinetic energies. Two methods for trapping the high kinetic energy ions are described: (i) the ion signal for [M+H]+ ions is shown to increase with increasing trapping voltages, and (ii) collisional relaxation is used for the detection of [M+H]+ ions of bovine insulin.

Angiotensin I

Mass spectrometry.

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Carbohydrates

Independent expression of cardiac type I and II cyclic AMP-dependent protein kinase during murine embryogenesis and postnatal development.

The amount of total cyclic AMP-dependent protein kinase and of the protein kinase isozymes present in mouse heart changes during development. During embryogenesis, the total cardiac protein kinase activity increases most markedly during the 6 days prior to birth. A maximum kinase level is achieved in the 7 day-old neonate, and then activity progressively declines to an adult level approximating that of the mid-embryo. The type II kinase exhibits a moderate increase during late embryogenesis which declines by the time of birth. The type I isozyme increases throughout embryogenesis and the first neonatal week to a maximum specific activity five-fold higher than the mid-embryogenesis level. The isozyme level then falls to an adult activity similar to the mid-embryonic. These changes in isozyme profile are reflected in a changing type I to type II kinase ratio of 1.1 at 13--14 days embryogenesis, 2.4 at birth, 3.0 in the 7 day-old neonates, and 1 in the adult heart. Thus, the two protein kinase isozymes change in association with the developmental process in an independent fashion.

Animals

Altered polyamine metabolism in cystic fibrosis.

Children with cystic fibrosis excreted elevated urinary levels of all three polyamines--putrescine, spermidine, and spermine. Heterozygote parents excreted intermediate concentrations of the polyamines, but not levels significantly different from levels in normal controls. Patients with cystic fibrosis who were administered a tracer amount of [14C]spermidine excreted 11--13% of the radiolabel within 72 hr whereas normal controls excreted 60--76% of the radiolabel within 72 hr. Spermine excretion was positively correlated with increased pathology as assessed by the National Institutes of Health (NIH) clinical score, whereas urinary putrescine and spermidine levels were negatively correlated with increased pathology.

Adult

Prolonged induction of hepatic ornithine decarboxylase and its relation to cyclic adenosine 3':5'-monophosphate-dependent protein kinase activation after a single administration of diethylnitrosamine.

After a single injection of diethylnitrosamine (200 mg/kg), there was a rapid increase in the activity ratio of hepatic cyclic adenosine 3':5'-monophosphate (cyclic AMP)-dependent protein kinase (within 1 hr) followed by the induction of ornithine decarboxylase which was detectable by 3 hr. Both the cyclic AMP-dependent protein kinase activity ratio and the activity of ornithine decarboxylase were significantly elevated above controls for 7 days following the administration of diethylnitrosamine. A single noncarcinogenic dose of diethylnitrosamine (25 mg/kg) did not increase the cyclic AMP-dependent protein kinase activity ratio or induce ornithine decarboxylase activity at 24 hr postadministration. However, serial administration of diethylnitrosamine (25 mg/kg) for 4 or 7 days resulted in an increased activity ratio of cyclic AMP-dependent protein kinase and increased ornithine decarboxylase activity. This is the first report of a prolonged increase in both the activity ratio of hepatic cyclic AMP-dependent protein kinase and the activity of ornithine decarboxylase in response to a single carcinogenic dose of diethylnitrosamine.

Animals

Polyamines in amniotic fluid, plasma, and urine during normal pregnancy.

Polyamines have been implicated as markers of cell kinetic parameters. Putrescine and spermine were elevated in the urine of women with normal pregnancies. Particularly striking was the over 75-fold increase in spermine excretion. Putrescine was more than twofold that found for normal women. In several patients followed serially during pregnancy to assess the temporal pattern of the urinary excretion of polyamines, it was found that the highest levels of all three polyamines occurred at 12 weeks of gestation. In amniotic fluid, putrescine was higher prior to 30 weeks of gestation whereas spermidine was significantly higher at or beyond 30 weeks of gestation. Spermine was relatively high in both groups. Studies are ongoing to assess whether alterations from these normally elevated patterns will occur in the fluids of pregnant women at high risk for abnormal fetal development.

Amniotic Fluid

Cystic fibrosis: decreased conjugation and excretion of [14C]spermidine.

Free and conjugated [14C]spermidine were measured in plasma samples from normal individuals and cystic fibrosis patients. Within 4 minutes, the 14C-labeled material in the plasma from normal individuals was 70 percent conjugated compared to no detectable conjugation by cystic fibrosis patients. Further, the patients excreted only 11 to 13 percent of the [14C]spermidine in their urine within 72 hours whereas normal excretion was 60 to 76 percent. In both cases, the labeled material was in a conjugated form.

Cystic Fibrosis

Cyclic AMP levels and types I and II cyclic AMP-dependent protein kinase activity in synchronized cells and in quiescent cultures stimulated to proliferate.

Cyclic AMP as well as the specific activity of cyclic AMP-dependent protein kinase decreased from the first two hours after Chinese hamster ovary cells in plateau phase were stimulated to proliferate by tripsinization of confluent cultures and dilution in fresh media. From two to five hours after this stimulation, the cyclic AMP level and the specific activity of cyclic AMP-dependent protein kinase increased two-fold. There was a 40--50% increase in the degree of activation of cyclic AMP-dependent protein kinase during this same time interval. In plateau cultures prior to being stimulated to proliferate, type I cyclic AMP-dependent protein kinase was the predominant soluble form of these enzymes. At five hours after release from plateau, the predominant type of cyclic AMP-dependent protein kinase was type II. However, there was also a significant amount of type I present at this time. Types I and II cyclic AMP-dependent protein kinases were differentially detectable during the cell cycle of Chinese hamster ovary cells synchronized by mechanical selection of metaphase cells following colcemid treatment. During mitosis, type I kinase was predominant with only a small amount of type II activity detectable. The amount of activity of type I then progressively decreased as cells entered G1. During early G1, there was no detectable activity of type II kinase, but its activity increased from mid to late G1 and then decreased during the S phase. These data show a tight temporal relationship between the levels of cyclic AMP, the total cellular pool of type I and II cyclic AMP-dependent protein kinases, and the degree of activation of these kinases as cells traversed G1 toward S phase. These data suggest that the expression of each type of kinase may be important for the regulation of substrate phosphorylation during the cell cycle.

Animals