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Biomedical subjects

R L Jackson

Publications and source records attributed to R L Jackson.

At least 19 recordsLinked to original sources

Induction of interleukin 1 beta expression from human peripheral blood monocyte-derived macrophages by 9-hydroxyoctadecadienoic acid.

Oxidatively modified low density lipoproteins (LDL) have recently been proposed to play a role in atherogenesis by promoting foam cell formation and endothelial cell toxicity. The purpose of the present study was to determine whether modified LDL could also induce macrophage release of interleukin 1 beta (IL-1 beta), a cytokine which enhances vascular smooth muscle cell proliferation, another feature of the atherosclerotic process. LDL were oxidatively modified by incubation with either Cu2+ (Cu(2+)-LDL) or human peripheral blood monocyte-derived macrophages (M-LDL). Incubation of these modified LDL with macrophages (6 x 10(6) cells/culture) resulted in a dose-dependent induction of IL-1 beta release. At 300 micrograms protein/ml, Cu(2+)-LDL and M-LDL induced 422 and 333 pg of IL-1 beta/culture, respectively. Saponified Cu(2+)-LDL and M-LDL were shown to contain 9- and 13-hydroxyoctadecadienoic acid (HODE), lipid oxidation products of linoleate. When tested for activity in macrophage culture (3 x 10(6) cells/culture), it was found that 9-HODE and 13-HODE (final concentration 33 microM) induced the release of 122 and 43 pg of IL-1 beta/culture, respectively, whereas untreated cells released only 4 pg of IL-1 beta/culture. Incubation of macrophages with cholesteryl-9-HODE also induced IL-1 beta release; however, the degree of induction of IL-1 beta release by 9-HODE or its cholesteryl ester relative to modified LDL suggests that other components in oxidized LDL may also contribute to IL-1 beta induction. 9-HODE was rapidly taken up by macrophages, and the kinetics were similar to IL-1 beta release. A 1.5- to 6-fold increase in the level of IL-1 beta mRNA was detected as little as 3-h post-9-HODE treatment. The induction of IL-1 beta release from human monocyte-derived macrophages by 9-HODE and cholesteryl-9-HODE suggests a role for modified LDL, and its associated linoleate oxidation products, in vascular smooth muscle cell proliferation.

Actins

Production and biological activity of hybrid growth hormone-releasing hormone propeptides.

Growth hormone-releasing hormone (GHRH), a hypothalamic hormone that stimulates the synthesis and release of growth hormone (GH) from anterior pituitary cells, has been previously produced by synthetic peptide chemistry and recombinant DNA procedures. GHRH is capable of stimulating growth as well as eliciting other anabolic effects on animals and thus may have potential applications in agriculture and human medicine. However, economical production of GHRH by recombinant DNA process has been difficult since GHRH is degraded rapidly by endogenous E. coli proteases. We report here an efficient process to produce hybrid GHRH analogs of higher molecular weight. These hybrid GHRH propeptides (proGHRH) are comprised of an analog of GHRH (44 aa) and the human GHRH carboxy-terminal peptide (33 aa). In E. coli K-12 RV308, the expression levels of the proGHRH analogs were estimated to be 10% of the total cellular protein. An in vitro assay to measure the release of rat growth hormone by GHRH analogs using crude E. coli lysates was also developed. This assay showed that the proGHRH analogs produced in E. coli efficiently stimulated GH release from rat anterior pituitary cells. One proGHRH analog, [alao]-proGHRH, was purified ans shown to efficiently elevate plasma GH levels in wether lambs. Our data indicate that the hybrid proGHRH peptides, unlike other hormone propeptides such as proinsulin, are remarkably bioactive.

Amino Acid Sequence

Effects of probucol on plasma lipids, lipoproteins and parameters of high density lipoprotein metabolism.

Eight patients with primary hypercholesterolemia were treated with probucol for 17 weeks. Plasma total cholesterol, low density lipoprotein (LDL)-cholesterol, and high density lipoprotein (HDL)-cholesterol decreased by 16.6, 15.0 and 25.7%, respectively, in response to probucol treatment. Plasma levels of apolipoprotein B and apolipoprotein A-I also decreased, while apolipoprotein A-II concentrations were unchanged. The decrease in HDL-cholesterol levels was associated with a reduction in HDL particle size. No changes in the plasma lecithin:cholesterol acyltransferase activity or mass occurred in response to probucol treatment. In contrast, a significant 25% increase in plasma cholesteryl ester and triglyceride transfer activity occurred following probucol treatment. There was a positive correlation (R = 0.94) between cholesterol ester and triglyceride transfer. We propose that the increase in lipid transfer activity may in part explain the changes in HDL concentration and size, as well as the previously reported effect probucol has on reducing atherosclerosis in animal models.

Aged

Trans-repressor activity of nuclear glycosaminoglycans on Fos and Jun/AP-1 oncoprotein-mediated transcription.

Heparin blocks the phorbol ester-induced progression of nontransformed cells through the G0/G1 phase (Wright, T.C., L.A. Pukac, J.J. Castellot, M.J. Karnovsky, R.A. Levine, H.-Y. Kim-Park, and J. Campisi. 1989. Proc. Natl. Acad. Sci. USA. 86: 3199-3203) or G1 to S phase (Reilly, C. F., M. S. Kindy, K. E. Brown, R. D. Rosenberg, and G. E Sonenshein. 1989. J. Biol. Chem. 264:6990-6995) of the cell cycle. Cell cycle arrest was associated with decreased levels of stage-specific mRNAs suggesting transcriptional regulation of cell growth. In the present report, we show that heparin selectively repressed TPA-inducible AP-1-mediated gene expression. Heparin-induced trans-repression was observed in primary vascular smooth muscle cells, as well as in the transformed HeLa cell line and in nondifferentiated F9 teratocarcinoma cells. Inhibition of AP-1-mediated trans-activation occurred with heparin and pentosan polysulfate but not with chondroitin sulfate A or C. Heparin-binding peptides or heparitinase I addition to nuclear lysates of heparin-treated cells allowed enhanced recovery of endogenous AP-1-specific DNA binding activity. We propose a model in which nuclear glycosaminoglycans play a trans-regulatory role in altering the patterns of inducible gene expression.

Animals

Mixtures of synthetic peptides and dipalmitoylphosphatidylcholine as lung surfactants.

Synthetic peptides that differ in their lipid-peptide interactions were combined with dipalmitoylphosphatidylcholine (DPPC) and tested in an adult rat lavaged lung model in vitro for efficacy as totally synthetic lung surfactants. The putative amphipathic alpha-helical region of the major lung surfactant apoprotein (SP-A81-102), an analogue with increased amphipathic alpha-helical potential ([Lys88,97,Glu99,Trp102]-SP-A81-102]), and the hydrophobic peptide gramicidin D were all ineffective. Three water-soluble lipid-binding peptides that contain amphipathic alpha-helical regions were also tested. Of these, only a 24-residue amphipathic alpha-helical peptide (18As) based on the lipid-binding sequences of the plasma apolipoproteins was effective. Melittin and glucagon were ineffective. Mixtures of 18As and DPPC also restored gas exchange in an in vivo lavaged guinea pig lung model to 90-95% of its prelavage value and maintained it for at least 3 h. Mixtures of DPPC and 18As are also surface active (gamma min less than 4 mN/m in the pulsating bubble). These data demonstrate the efficacy of a combination of a single lipid and a small, water-soluble, nonhemolytic, synthetic peptide containing an amphipathic alpha-helical structure and a sequence unrelated to any of the reported lung surfactant apoprotein sequences.

1,2-Dipalmitoylphosphatidylcholine

Inhibition of IL-1 beta expression in THP-1 cells by probucol and tocopherol.

The cytokine interleukin-1, IL-1, likely plays an important role in the early stages of atherogenesis. The possible action of probucol and tocopherol on the expression and secretion of IL-1 beta was investigated using the human monocytic leukemia cell line, THP-1. Both probucol and D-alpha-tocopherol inhibit the phorbol ester-induced release of IL-1 beta without altering differentiation. Analysis of IL-1 beta mRNA levels revealed that probucol and tocopherol had an inhibitory effect on the activation of expression of the IL-1 beta gene. The data suggest that the beneficial effects of probucol may be related to inhibition of IL-1 at an early phase of atherosclerotic plaque formation.

Cell Differentiation

Molecular design and modeling of protein-heparin interactions.

The methods and approaches taken to investigate heparin-apoE peptide interactions have involved a series of steps, including (1) identification of the heparin-binding domains of apoE, (2) determination of the minimal amino acid sequence regions involved in heparin binding, heparin-induced conformational changes, and stability of apoE peptide structures in solution, (3) modeling of these peptide and oligosaccharide structures, and (4) examination of their behavior during molecular dynamics calculations to determine if the modeled complexes simulate the results of the solution study. The heparin-binding regions of apoE were determined by fragmentation of the protein and identification of the heparin-binding fragments by ligand-blotting procedures using 125I-labeled heparin. Studies with synthetic peptide fragments of various lengths and dot-blot procedures with 125I-labeled heparin identified the minimal residues critical for heparin-binding and CD studies established the prominent secondary structures of these domains. These studies also showed that heparin binds to the apoE(211-243) and apoE(129-169) regions to induce and stabilize beta-strand and alpha-helical peptide conformations. Secondary structure algorithms were used to identify the specific residues with the highest probabilities of forming alpha-helix and beta-strand structures. Based on the predictive algorithms, the apoE(211-234) and apoE(129-159) structures were built using the Insight program and their molecular interactions with various heparin oligosaccharide models were investigated by molecular dynamics. In agreement with the solution studies in the presence of salt, the molecular dynamics studies showed that the oligosaccharides stabilized the beta-strand and alpha-helical peptide configurations against simulated thermal denaturations. Further modeling studies are in progress to examine the mechanism of the heparin-induced increase in ordered structure of these peptides.

Algorithms

Antioxidant activity of probucol and its analogues in hypercholesterolemic Watanabe rabbits.

Probucol (1) and probucol analogues with the substitutions at the disulfide-linked carbon (2, 3) and an additional substitution at a tert-butyl of each phenolic ring (4) were tested for their ability to lower total serum cholesterol and prevent aortic atherosclerosis in modified Watanabe heritable hyperlipidemic (WHHL) rabbits and to inhibit Cu2(+)-induced lipid peroxidation of isolated plasma low-density lipoproteins (LDL). After 84 days of feeding 1% of each compound in rabbit chow, probucol was effective in lowering serum cholesterol, whereas 2-4 were not. The concentration of drug in serum and LDL was 2 greater than 1 greater than 3 greater than 4. Probucol and analogues prevented Cu2(+)-induced oxidation of LDL in vitro to an extent that directly related to their concentrations in LDL. The decrease in lipid oxidation was directly correlated with the inhibition of both oxidized-LDL-induced cholesteryl ester synthesis in cultured macrophages and to the inhibition of aortic atherosclerosis in vivo. These results show that the antioxidant activity of probucol and analogues is directly related to their concentration in LDL, which may explain their pharmacological activity in reducing atherosclerosis.

Animals

Lipid hydroperoxide involvement in copper-dependent and independent oxidation of low density lipoproteins.

The involvement of lipid hydroperoxides in the oxidation of human low density lipoproteins (LDL) induced by Cu++ or azoperoxyl radicals was studied. Concurrent or pretreatment of LDL with the synthetic peroxidase Ebselen and its cofactor glutathione totally prevented Cu+(+)-dependent oxidation, as measured by the formation of thiobarbituric acid reactive substances and LDL mobility on agarose gels. LDL could be oxidized in the absence of metals with peroxy radicals generated via homolysis of azo compounds. With the azo initiator, 2,2'-azobis-2-amidinopropane hydrochloride, Ebselen plus glutathione prevented lipid oxidation when present during oxidation. However, if LDL were first pretreated with Ebselen plus glutathione and these reagents removed before oxidation, they did not prevent oxidation. Analysis by high-performance liquid chromatography of lipids extracted from Cu+(+)- or azoperoxyl radical-modified lipoproteins indicated that the major lipid oxidation products were derived from linoleate and that Ebselen-glutathione addition reduced linoleate hydroperoxides. Oxidation of LDL by human monocyte-derived macrophages was also prevented by coincubation with Ebselen-glutathione or the antioxidant, probucol. These results demonstrate that initiation of Cu+(+)-dependent oxidation absolutely requires the presence of trace amounts of lipid hydroperoxides in the lipoprotein and that hydroperoxides play a major role in the propagation reactions even in the absence of added transition metals.

Azo Compounds

Differential regulation of hepatic triglyceride lipase and 3-hydroxy-3-methylglutaryl-CoA reductase gene expression in a human hepatoma cell line, HepG2.

The level of hepatic triglyceride lipase (H-TGL) synthesis and secretion was examined in response to changes in cholesterol biosynthesis in the human hepatoma cell line HepG2. Cells were first fed a lipoprotein-deficient serum-supplemented medium to eliminate exogenous cholesterol. Mevinolin, a 3-hydroxy-3-methylglutaryl-CoA (HMG-CoA) reductase inhibitor, was then added at a concentration (37 microM) which inhibited cholesterol biosynthesis by greater than 85% and decreased total cell cholesterol from 36.1 to 27.4 micrograms/ml of cell protein. Mevinolin treatment caused a 4.9 +/- 0.8-fold increase in the amount of H-TGL activity secreted into the medium, a 1.8 +/- 0.4-fold rise in H-TGL-specific mRNA, and a concurrent 14-fold increase in HMG-CoA reductase mRNA. Addition of 1 mM mevalonic acid to normal or mevinolin-treated cells raised the cellular cholesterol content and decreased the amount of secreted H-TGL activity to levels below control values. Mevalonic acid also prevented mevinolin-induction of H-TGL and HMG-CoA reductase mRNA, suggesting a common regulatory step for H-TGL and HMG-CoA reductase. Exposure of cells to mevinolin and 25-hydroxycholesterol together resulted in a marked repression of HMG-CoA reductase mRNA levels, whereas these conditions further enhanced the secretion of H-TGL activity and the expression of H-TGL mRNA. These results demonstrate a differential role for 25-hydroxycholesterol in the regulation of H-TGL and HMG-CoA reductase expression.

Carcinoma, Hepatocellular

Characterization of a monoclonal antibody specific to the amino terminus of the alpha-chain of human fibrin.

A peptide, Gly-Pro-Arg-Val-Val-Glu, corresponding to the first six residues of the amino terminus of the alpha-chain of human fibrin (desAA-fibrin) was prepared by solid-phase peptide synthesis. The peptide was covalently linked to keyhole-limpet hemocyanin (KLH) and used as an immunogen for preparing monoclonal antibodies. A monoclonal antibody specific to the hexapeptide, but not to KLH or fibrinogen, was produced. The antibody did not bind to thrombin-mediated clots prepared from either plasma or purified fibrinogen. However, immunoreactivity was detected when fibrin (prepared from fibrinogen) was solubilized with 8 M urea. In contrast, a monoclonal antibody specific to the amino terminus (Gly-His-Arg-Pro-Leu-Asp-Lys) of the beta-chain of fibrin recognized the epitope in clots. These results indicate that thrombin cleavage of fibrinogen produces a structural change in the amino terminal domain of the alpha-chain that makes it inaccessible to antibody interaction. In addition, our study suggests that the potential clinical application of monoclonal antibodies to localize fibrin-rich thrombi must take into account the final structure of clots.

Amino Acid Sequence

Ex vivo lipopolysaccharide-induced interleukin-1 secretion from murine peritoneal macrophages inhibited by probucol, a hypocholesterolemic agent with antioxidant properties.

Probucol, 4,4'-(isopropylidenedithio)bis(2,6-di-tert-butyl-phenol), has been shown to inhibit atherogenesis in genetically hypercholesterolemic (Watanabe) rabbits. Since atherosclerotic lesions contain macrophages capable of screting interleukin 1 (IL 1) and other cytokines that could contribute to the pathogenesis of the disease, we have investigated whether probucol affects IL 1 secretion. Resident peritoneal macrophages from mice dosed with probucol secreted 40-80% less IL 1 than macrophages from control animals when stimulated in vitro with lipopolysaccharide (LPS). The inhibitory effect of probucol was observed when IL 1 was assayed by the standard bioassay, the thymocyte proliferation assay, or a competitive IL 1 receptor binding assay. Probucol treatment had no effect on LPS-induced membrane IL 1 expression; secretion of tumor necrosis factor (TNF); Con A-induced splenic interleukin 2 (IL 2) and interleukin 3 (IL 3) release; and prostaglandin- or zymosan-induced secretion of prostacyclin, leukotriene C4, acid phosphatase, or superoxide anion. In contrast to the effect of oral administration, direct addition of probucol to macrophage cultures did not inhibit IL 1 release. Probucol administration did, however, inhibit the fall in serum zinc level induced by intravenous injection of LPS in zymosan-primed mice but had no effect on the LPS-induced increase in serum triglyceride levels, which indirectly confirms that probucol administration inhibits IL 1 but not TNF secretion. Paw granuloma induced in mice by heat-killed mycobacteria was inhibited by oral administration of probucol, an effect that may be attributable to inhibition of IL 1 secretion. Probucol neither reduced zymosan-induced liver granulomata in mice nor inhibited adjuvant-induced arthritis in rats. We suggest that inhibition of IL 1 secretion from macrophages by probucol contributes to its therapeutic effects in atherosclerosis and may also result in beneficial activity in some chronic inflammatory diseases.

Administration, Oral

Probucol does not alter acetylated low density lipoprotein uptake by murine peritoneal macrophages.

It has been suggested that the anti-atherogenic effect of probucol (MDL 11,309) in familial hypercholesterolemic rabbits may be due in part to the inhibition of the uptake of modified low density lipoproteins by macrophages in the arterial wall. To test this hypothesis, mice were treated with dietary probucol (0.25%) for fourteen days, peritoneal macrophages were isolated and the uptake of acetylated low density lipoprotein (ALDL) was studied. In addition, peritoneal macrophages from control animals were treated with probucol (200 micrograms/ml) for 24 h in vitro prior to the ALDL uptake assay. The assay involved a fluorescent ALDL probe (dioctadecyltetramethylindocarbocyanine perchlorate-labeled ALDL), and measurement of uptake with a flow cytometer. No differences in ALDL uptake were detected between the control macrophages and macrophages treated with probucol in vitro or macrophages taken from probucol-treated mice.

Acylation