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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

Prolactin-provoked alterations of cytosolic, membrane, and nuclear protein kinase C following partial hepatectomy.

The adenohypophyseal polypeptide hormone prolactin is a potent liver mitogen, stimulating cell cycle progression, an effect that appears coupled to increasing protein kinase C activity in membrane and nuclear fractions. Here, we examine whether hepatocyte proliferation, stimulated by partial hepatectomy, is associated with altered serum prolactin or protein kinase C activation. Within 5-15 min of liver resection, serum prolactin concentrations elevate significantly. Protein kinase C activity in hepatic cytosol decreases significantly, and membrane and nuclear PKC activity increase by 30 min. Hypophysectomy prior to partial hepatectomy abrogates any effect of liver resection on protein kinase C activation in the hepatic remnant. Based upon these data, it is suggested that the rapid increase in serum prolactin seen after partial hepatectomy may be linked to protein kinase C activation, which in turn stimulates the hepatic proliferative response that is essential for hepatic regeneration.

Animals

Triphasic response of prostacyclin production in rabbit thoracic aorta in early atherosclerosis.

Atherosclerosis was induced in male rabbits by administration of a 2% cholesterol diet for up to 18 weeks. The animals were assessed for aortic microsomal prostanoid synthesis, morphologic assessment and serum cholesterol levels. Serum levels of cholesterol increased from control values of 84 +/- 9 ng/dl to 1632 +/- 227 ng/dl at 2 weeks (20-fold increase), and 4859 +/- 829 ng/dl at 9 weeks (57-fold increase). Aortic microsomal prostacyclin synthesis fell significantly at 2 weeks of cholesterol feeding which predated the morphologic appearance of atherosclerotic plaque in the 7 week group. Aortic microsomal PGI2 synthesis significantly increased by 7 weeks and did not fall until the 18 week group when a highly significant increase in aortic plaque developed. These findings suggest a triphasic response of aortic PGI2 synthesis with the development of early atherosclerosis. Phase one is a fall in aortic PGI2 synthesis which predates the appearance of plaque. In phase 2, a significant rise in aortic PGI2 with the appearance of plaque could represent compensation of aortic endothelium to prevent further plaque development. In phase 3, decreased aortic PGI2 could indicate replacement of normal endothelium by atherosclerotic plaque.

Animals

Identification and characterization of a prolactin-like polypeptide synthesized by mitogen-stimulated murine lymphocytes.

Previously, we have reported that concanavalin A (Con A)-stimulated murine splenocytes synthesize and secrete into the medium a substance with prolactin (PRL)-like properties. Western blot analysis of the culture medium of Con A-stimulated murine splenocytes identified a PRL-like polypeptide (Ly-PLP) with an apparent molecular weight (Mr) of 46 kd. Rabbit anti-rat PRL antibody (S-9, NIDDK) was used for immunostaining. Specificity was proved by the absence of a band in properly preabsorbed primary and secondary antibodies. Electroeluted Ly-PLP enhanced the mitogenic response of lymphocytes to Con A. In situ hybridization analysis of dispersed lymphocyte smears demonstrated the presence of an mRNA that hybridized with a rat PRL cDNA probe. The size of the mRNA species was 1.4 kb on Northern blot analysis. Two-dimensional peptide map analysis of pituitary PRL and Ly-PLP showed three peptides with identical migration characteristics. Western blot analysis of lymphocyte culture medium following Con-A-affinity column treatment provided evidence that the Ly-PLP was a non-glycoprotein. Therefore, we conclude that Ly-PLP represents a structural variant of pituitary-PRL (Pit-PRL), and provide evidence to strongly suggest that it is a novel lymphokine.

Animals

Vasoactive intestinal peptide (VIP) activation of nuclear protein kinase C in purified nuclei of rat splenocytes.

We have examined the actions of vasoactive intestinal peptide (VIP) and certain other known immune modulators on a nuclear pool(s) of protein kinase C (PKC) in isolated rat splenocyte nuclei. Rat splenocyte nuclei pure by enzymatic and electron microscope criteria demonstrated a time- and concentration-dependent activation of nuclear PKC (nPKC) by VIP. A biphasic pattern of three bell-shaped curves was observed with peak phosphorylation at 10(-15), 10(-9) and 10(-6)M VIP. The phosphorylation of endogenous nuclear substrates was characterized as a PKC-mediated event by use of three known PKC inhibitors, 1-(5-isoquinolinylsulfonyl)-2-methylpiperazine (H-7), sphingosine, and staurosporine, which produced similar phosphate incorporation measurements. Also, this activity was blocked with the addition of a monoclonal antibody to PKC. Inhibitors of the ability of VIP to activate nPKC included somatostatin, 8-bromo-cAMP, peripheral benzodiazepine receptor modulators, and the PKC inhibitors, sphingosine and staurosporine. These data have direct relevance to our knowledge of cell-mediated immunity.

8-Bromo Cyclic Adenosine Monophosphate

Prolactin and known modulators of rat splenocytes activate nuclear protein kinase C.

Prolactin (PRL) and other trophic factors rapidly activate a nuclear pool(s) of protein kinase C (nPKC) in purified splenocyte nuclei. The PRL also enhanced [2-3H]glycerol incorporation into nuclear mono- and triacylglycerol. An assay was devised which not only probed the ability of the hormone to activate protein kinase C (PKC) but also demonstrated the presence of nuclear substrates. Using this methodology, a biphasic concentration-response curve to PRL was observed. Heterologous species of PRL and various growth factors also activated nPKC. The PRL-induced nPKC stimulation was antagonized by various immunomodulators, G protein-coupling inhibitors, PKC inhibitors, a calmodulin inhibitor, and a peripheral benzodiazepine agonist and antagonist. A monoclonal antibody to PKC, anti-rat PRL antiserum and a monoclonal anti-rat PRL receptor antibody antagonized PRL-induced PKC-dependent nuclear phosphorylation, further implicating nPKC and a PRL receptor-mediated activation process. Nuclear PKC may be a major target for trophic regulation in response to both positive and negative growth signals.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

The HIV protein, GP120, activates nuclear protein kinase C in nuclei from lymphocytes and brain.

Nuclear pool(s) of protein kinase C (PKC) may be a common target for hormones and growth factors which affect the trophic state of cells. The data presented demonstrate a time and dose-dependent activation of nuclear PKC by the HIV coat protein, gp120, in isolated nuclei from rat spleen and hippocampus. This gp120-stimulated PKC response was blocked by specific PKC inhibitors, a monoclonal antibody to PKC, and a monoclonal antibody directed against the murine T4 analog, L3T4. It is suggested that the gp120 interaction with the nuclear trophic factor-PKC system may impair normal gene expression, and thus result in the clinical symptoms associated in AIDS infection.

Alkaloids

Adenosine activation of a nuclear pool of protein kinase C in rat splenocytes.

The stimulatory effects of adenosine analogues on a nuclear pool of protein kinase C (PKC) were examined using isolated rat splenocyte nuclei. Nuclear receptors met pharmacological criteria of A1 adenosine receptors including a potency profile in which cyclopentyladenosine (CPA), a selective A1 agonist, was more potent than 2-phenylaminoadenosine (2PAA), a selective A2 agonist. The selective A1 receptor agonist N6-1-(phenyl-2R-propyl) adenosine (R-PIA) activated PKC whereas the S diastereomer did not. The adenosine-induced PKC response could be attenuated using a monoclonal antibody to PKC, an A1 receptor antagonist, three known PKC inhibitors and pertussis toxin (PTX). The results suggest that adenosine may exert immunomodulatory effects through the activation of nuclear PKC.

Adenosine

Regulation of interleukin 2-driven T-lymphocyte proliferation by prolactin.

The requirement for prolactin in interleukin 2-driven T-cell proliferation was evaluated. Addition of an anti-prolactin antiserum resulted in the specific inhibition of T-cell proliferation in a time- and dose-dependent manner. Synthesis of prolactin and its mRNA, however, did not occur during interleukin 2 stimulation. Instead, previously internalized prolactin, presumably from fetal bovine serum, appears to serve as the source of prolactin under serum-free conditions. A 7-fold increase in a prolactin receptor occurred as a function of cell cycle progression; accumulation of a 1.6-kilobase prolactin receptor mRNA increased approximately 2-fold. Interleukin 2 stimulation induced the translocation of prolactin into the nucleus and prolactin receptor to the nuclear periphery. These data indicate that extracellular prolactin is requisite for T-cell proliferation and suggest that the effects of prolactin are exerted in the nucleus.

Animals

Peripheral benzodiazepine binding sites in Nb 2 node lymphoma cells: effects on prolactin-stimulated proliferation and ornithine decarboxylase activity.

[3H]Ro 5-4864 binds to Nb 2 node lymphoma cells in a specific saturable and reversible fashion. Scatchard analysis of specific binding data reveals a single, homogeneous class of whole cell binding sites with a Kd of 3.94 +/- 0.22 nM and a Bmax value of 155 +/- 11 fmol (Ro 5-4864 bound)/2 x 10(6) cells. Ro 5-4864, a reported peripheral benzodiazepine receptor agonist both inhibits (10(-6) M) and potentiates (10(-9) M) the mitogenic action of prolactin on the Nb 2 node lymphoma cells. Interestingly, PK 11195, an antagonist, potentiates (10(-9) M) the mitogenic activity of prolactin in these cells. The actions of both Ro 5-4864 and PK 11195 seem to be mediated through a common receptor type since a 10(-6) M concentration of either agent will block the others potentiating action. Furthermore, the simultaneous addition of a 10(-9) M concentration of Ro 5-4864 and PK 11195 does not further increase the effect on prolactin stimulated mitogenesis. Clonazepam, a central benzodiazepine receptor agonist has no effect on prolactin-stimulated mitogenesis in this system. These data suggest that the Nb 2 node lymphoma cells possess a peripheral-type benzodiazepine receptor. In these cells, this receptor seems to serve the function of modulating the ability of the growth factor, prolactin to initiate the mitogenic process. These studies also suggest that Ro 5-4864 is functioning as a partial agonist rather than a 'pure' agonist for the peripheral benzodiazepine receptor in this system.

Benzodiazepinones

Ion detection by Fourier transform ion cyclotron resonance: the effect of initial radial velocity on the coherent ion packet.

Ion detection by Fourier transform ion cyclotron resonance (FT-ICR) is accomplished by observing a coherent ion packet produced from an initially random ensemble of ions. The coherent packet is formed by excitation with a resonant oscillating electric field. Ions that are out of phase with the applied radio frequency (rf) electric field experience a continuous misalignment of the electric field vector. The misalignment creates a net force of the electric field perpendicular to ion motion. The perpendicular component of the rf electric field creates a frequency shift resulting in phase synchronization of the ion ensemble. The phase coherence of the ion packet affects both the sensitivity and the resolution of FT-ICR.

Electromagnetic Fields

Prolactin stimulation of protein kinase C activity in rat aortic smooth muscle.

Prolactin (PRL) activated protein kinase C (PKC) in a dose dependent manner in rat aortic smooth muscle. Aortic strips incubated with sub-nanomolar concentrations of ovine PRL for 25 min. at 37 degrees C showed a significant stimulation of PKC activity in both cytosolic and particulate fractions. This activation could be blocked using either anti-PRL antibodies or 1-(5- isoquinolinesulfonyl)-2-methylpiperazine (H-7), a PKC inhibitor. The results further support the role of PKC in the signal transduction pathway for PRL action and suggest that this activation may be involved in vascular smooth muscle function.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine

New aspects of prolactin and immunity: a lymphocyte-derived prolactin-like product and nuclear protein kinase C activation.

In addition to its growth regulating properties, new evidence reviewed here by Diane Haddock Russell demonstrates that prolactin has important immunoregulatory properties. In immune-compromised dwarf mice, prolactin restores immunocompetence. Human lymphocytes have prolactin receptors and mitogen-stimulated lymphocytes make and secrete a prolactin-like activity. Prolactin can stimulate the activation of nuclear protein kinase C in spleen and liver isolated nuclear preparations. This activation is blocked by prolactin receptor monoclonal antibody, suggesting that there is a receptor-mediated activation process in the nucleus. The discovery of the ability of prolactin and growth factors to activate nuclear protein kinase C may constitute a breakthrough in our understanding of how these hormones regulate trophic responses.

Cell Nucleus