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Biomedical subjects

R Goldman

Publications and source records attributed to R Goldman.

At least 19 recordsLinked to original sources

Reactive oxygen species are involved in the activation of cellular phospholipase A2.

Vanadate (V) potentiated (4- to 10-fold) the activation of cellular phospholipase A2 (PLA2) induced by H2O2 (H), a phorbol ester (T), a Ca(2+)-ionophore (A) and opsonized zymosan in macrophages. V+H induced in intact cells the activation and translocation of PLA2 and protein kinase C (PKC) to the plasma membrane. V+H and V+T+A induced strong chemiluminescence (CL) which was abrogated by a specific NADPH oxidase inhibitor diphenylene iodonium (DPI). DPI markedly suppressed the stimulation of PLA2 by V+T+A and V+OZ. The results suggest that the formation of endogenous reactive oxygen species (ROS) is important for PLA2 activation.

Animals

Influence of codon context on UGA suppression and readthrough.

We studied the influence of the codon context on UGA suppression by a suppressor tRNA and on UGA readthrough by a normal tRNA in Escherichia coli. This was done by a series of constructs where only the immediate context of the TGA codon was varied by only one nucleotide at a time. For both UGA suppression and UGA readthrough the codon context had a similar influence according to the following rules. (1) The nature of the nucleotide immediately adjacent to the 3' side of the UGA is an important determinant; at that position the level of UGA translation is influenced by the nucleotides in the order A greater than G greater than C greater than U. (2) At extremely high or low levels of UGA translation this influence of the adjacent 3' nucleotide is not seen. (3) In all cases, the nature of both the nucleotide immediately adjacent to the 5' side of the codon and that following the base adjacent to the 3' side of the codon have little effect, if any, on UGA translation. The varying influence of the codon context effect on UGA translation is discussed in relation to its role in gene expression.

Base Sequence

Isolation and characterization of a unique 15 kilodalton trypanosome subpellicular microtubule-associated protein.

A protein of 15 kDa (p15) was isolated from Trypanosoma brucei subpellicular microtubules by tubulin affinity chromatography. The protein bound tubulin specifically both in its native form and after SDS-PAGE in tubulin overlay experiments. p15 promoted both the in vitro polymerization of purified calf brain tubulin and the bundling of preformed mammalian microtubules. Immunolabeling identified p15 at multiple sites along microtubule polymers comprising calf brain tubulin and p15 as well as on the subpellicular microtubules of cryosectioned trypanosomes. Antibodies directed against p15 did not cross react with mammalian microtubules. It is suggested that p15 is a trypanosome-specific microtubule-associated protein (MAP) that contributes to the unique organization of the subpellicular microtubules.

Animals

VLA-2 is the integrin used as a collagen receptor by leukocytes.

Cultured T cells and freshly isolated mononuclear leukocytes are able to bind collagen specifically. These leukocytes express equivalent levels of the integrins VLA-1, VLA-2 and VLA-3 which are collagen-binding receptors on other cells. However, only solubilized VLA-2 is able to bind collagen and only monoclonal antibodies specific for alpha 2 or beta 1 subunits are able to block the binding of intact cells to collagen. This restriction provides another example of the dependence of integrin specificity on the cell type on which it is expressed. It was also speculated that the inserted or I domain on the alpha subunits of VLA-1, VLA-2 and the beta 2 integrin family might have a role in collagen binding on the basis of its sequence homology to other types of collagen binding proteins. However, LFA-1, CR3 and p150,95 showed no collagen binding activity, suggesting that the I domain has another function.

Cells, Cultured

Regulation of lipoprotein lipase secretion in murine macrophages during foam cell formation in vitro. Effect of triglyceride-rich lipoproteins.

Triglyceride rich-lipoproteins induce triglyceride accumulation in macrophages, leading to foam cell formation. The correlation between cell triglyceride accumulation and lipoprotein lipase (LPL) secretion in murine macrophages and the role that LPL plays in the accumulation process were examined. LPL secretion is defined as the extracellular LPL activity that accumulates during a 4-hour incubation of treated and untreated cells in a bovine serum albumin-containing RPMI-1640 medium. LPL secretion was suppressed (up to 70%) in a dose- and time-dependent manner when J774.1 cells were incubated with chylomicrons, very low density lipoproteins, and intermediate density lipoproteins but not with low or high density lipoproteins from normolipidemic and hypertriglyceridemic subjects. Oleic acid both suppressed LPL secretion and invoked triglyceride accumulation. Suppression of LPL secretion preceded gross triglyceride accumulation, was reversible, and was not the result of a reduction in LPL mRNA. P388D1 cells neither secreted LPL nor accumulated triglyceride. Inhibition of LPL secretion by tunicamycin in both peritoneal macrophages and J774.1 cells prevented a hypertriglyceridemic very low density lipoprotein-induced triglyceride accumulation, an effect that was counteracted by addition of exogenous LPL. The results suggest that 1) extracellular hydrolysis of lipoprotein triglyceride is a major factor in inducing foam cell formation and 2) LPL secretion may be regulated by cell energy needs, and when these needs are exceeded, LPL secretion is suppressed.

Animals

Ultraviolet light-induced generation of vitamin E radicals and their recycling. A possible photosensitizing effect of vitamin E in skin.

Vitamin E (alpha-tocopherol) is the major lipid-soluble chain-breaking antioxidant of membranes. Its UV-absorbance spectrum (lambda max 295 nm) extends well into the solar spectrum. We hypothesize that in skin alpha-tocopherol may absorb solar UV light and generate tocopheroxyl radicals. Reduction of tocopheroxyl radicals by other antioxidants (e.g. ascorbate, thiols) will regenerate (recycle) vitamin E at the expense of their own depletion. Hence, vitamin E in skin may act in two conflicting manners upon solar illumination: in addition to its antioxidant function as a peroxyl radical scavenger, it may act as an endogenous photosensitizer, enhancing light-induced oxidative damage. To test this hypothesis, we have illuminated various systems (methanol-buffer dispersions, liposomes and skin homogenates) containing alpha-tocopherol or its homologue with a shorter 6-carbon side chain, chromanol-alpha-C6 with UV light closely matching solar UV light, in the presence or absence of endogenous or exogenous reductants. We found that: (i) alpha-tocopheroxyl (chromanoxyl) radicals are directly generated by solar UV light in model systems (methanol-water dispersions, liposomes) and in skin homogenates; (ii) reducing antioxidants (ascorbate, ascorbate+dihydrolipoic acid) can donate electrons to alpha-tocopheroxyl (chromanoxyl) radicals providing for vitamin E (chromanol-alpha-C6) recycling; (iii) recycling of UV-induced alpha-tocopheroxyl radicals depletes endogenous antioxidant pools (accelerates ascorbate oxidation); (iv) beta-carotene, a non-reducing antioxidant, is not active in alpha-tocopherol recycling, and its UV-dependent depletion is unaffected by vitamin E.

Animals

Dexamethasone suppression test in schizophrenia: relationship to symptomatology, ventricular enlargement, and outcome.

To relieve confusion about the clinical correlates and prognostic implications of the dexamethasone suppression test (DST) in schizophrenia, we conducted a DST in 44 schizophrenic inpatients at drug-free baseline and approximately 4 weeks after neuroleptic treatment. Patients were rated on positive, negative, and depressive symptoms at both times. A head computed tomography (CT) scan was performed and measures of ventricle-brain ratio (VBR) obtained. Clinical improvement was monitored at four weeks, and longer-term outcome assessed at 1 year. Seventeen of the 44 patients were DST nonsuppressors at baseline, and five of these remained nonsuppressors at 4 weeks posttreatment. Postdexamethasone plasma cortisol levels were correlated with negative symptoms at baseline (r = 0.45; p less than 0.01), but not after 4 weeks of neuroleptic treatment. Postdexamethasone plasma cortisols were not related to global severity, positive, or depressive symptoms at either timepoint or to VBR. Persistent nonsuppression was associated with poor outcome, but baseline postdexamethasone cortisol levels were unrelated to outcome at 4 weeks and 1 year. The literature on DST in schizophrenia is reviewed and attempts are made to reconcile discrepant findings and to discuss pathophysiological implications.

Adolescent

The regulation of intermediate filament reorganization in mitosis. p34cdc2 phosphorylates vimentin at a unique N-terminal site.

The disassembly of vimentin-containing intermediate filament (IF) networks during mitosis in BHK-21 cells is accompanied by increased phosphorylation of vimentin (Chou, Y.-H., Rosevear, E., and Goldman, R. D. (1989) Proc. Natl. Acad. Sci. U. S. A. 86, 1885-1889). We have recently identified p34cdc2 as the catalytic subunit of one of the two endogenous vimentin kinases in mitotic baby hamster kidney cells (Chou, Y.-H., Bischoff, J. R., Beach, D., and Goldman, R. D. (1990) Cell 62, 1063-1071). To begin to characterize the biochemical basis of the p34cdc2-mediated IF disassembly process, we have purified and sequenced the 32P-labeled tryptic peptides derived from in vitro-phosphorylated vimentin. The results demonstrate that Ser-55, in the N-terminal non-alpha-helical domain of vimentin, is the most favored phosphorylation site. This finding supports the idea that the N-terminal domain of type III IF protein plays a crucial role in regulating IF structure and supramolecular organization.

Amino Acid Sequence

Effect of repeated occupational exposure to lead, cessation of exposure, and chelation on levels of lead in bone.

A sensitive K-X-ray fluorescence (K-XRF) instrument was used to measure lead levels in the tibia and patella on a series of twelve subjects who had relatively well-documented histories of lead exposure and blood lead levels. For some subjects, K-XRF measurements were taken at multiple points in time, and before and after chelation with EDTA (ethylenediamine tetraacetic acid). Results confirm that K-XRF measured bone lead levels correspond to cumulative blood lead indices and not to current blood lead levels. Moreover, the data suggest that bone lead levels; (1) correspond to urinary lead following the EDTA mobilization test unless previous chelation has occurred; (2) rise initially after lead exposure ceases and blood lead levels decrease, probably from redistribution from soft tissue, and then fall; and (3) do not decrease with a 3- to 5-day course of therapeutic EDTA chelation. K-XRF levels in the patella were noted to decrease more rapidly than levels in the tibia after cessation of lead exposure, a finding that probably reflects the greater turnover of lead in trabecular bone than in cortical bone.

Adult

A complex containing p34cdc2 and cyclin B phosphorylates the nuclear lamin and disassembles nuclei of clam oocytes in vitro.

Cell-free extracts prepared from activated clam oocytes contain factors which induce phosphorylation of the single 67-kD lamin (L67), disassemble clam oocyte nuclei, and cause chromosome condensation in vitro (Dessev, G., R. Palazzo, L. Rebhun, and R. Goldman. 1989. Dev. Biol. 131:469-504). To identify these factors, we have fractionated the oocyte extracts. The nuclear lamina disassembly (NLD) activity, together with a protein kinase activity specific for L67, appear as a single peak throughout a number of purification steps. This peak also contains p34cdc2, cyclin B, and histone H1-kinase activity, which are components of the M-phase promoting factor (MPF). The NLD/L67-kinase activity is depleted by exposure of this purified material to Sepharose conjugated to p13suc1, and is restored upon addition of a p34cdc2/p62 complex from HeLa cells. The latter complex phosphorylates L67 and induces NLD in the absence of other clam oocyte proteins. Our results suggest that a single protein kinase activity (p34cdc2-H1 kinase, identical with MPF) phosphorylates the lamin and is involved in the meiotic breakdown of the nuclear envelope in clam oocytes.

Animals

Administration of beta-glucan following Leishmania major infection suppresses disease progression in mice.

The potential of beta-glucan (glucan) to suppress the progression of lesions caused by virulent strains of Leishmania major in genetically susceptible BALB/c mice when administered post challenge was evaluated. Glucan particles (glucanp) prepared from Saccharomyces cerevisiae were injected i.v. at 7-day intervals starting 7 days after parasite challenge. Four injections gave a more rapid and a higher extent of suppression than 1, 2 or 3 injections. Mice receiving only parasites, a glucose solution, starch particles or glucanp by the i.p. route showed a progressive increase in footpad thickness and developed ulcerating lesions. An alkali solubilized glucan (glucanas) was injected (50 micrograms, 200 micrograms and 400 micrograms/mouse) 4 times at 4 day intervals either i.v. or i.p. starting four days post parasite challenge. Glucanas injection by either route blocked lesion development; the 50 micrograms treatment had already substantial effects and 400 micrograms in the i.p. route prevented even the initial stages of lesion formation. Touch prints from the lesion area and from the liver of mice receiving 200 micrograms glucanas were amastigote free. The anti Leishmania antibody titre of glucanas treated mice was lower and their sera recognized fewer antigens than that of control Leishmania bearing mice.

Animals

Heterodimerization of the erbB-1 and erbB-2 receptors in human breast carcinoma cells: a mechanism for receptor transregulation.

The erbB-1 and erbB-2 protooncogenes encode homologous membrane receptors that respectively bind epidermal growth factor (EGF) and a still incompletely characterized ligand. Binding of EGF to its receptor is known to increase tyrosine phosphorylation of the erbB-2/neu receptor in tumor cells. To investigate the mechanism of this transregulatory pathway, we analyzed the interactions between the two receptors in SKBR-3 human breast carcinoma cells. Chemical cross-linking of 125I-labeled EGF revealed that the radiolabeled EGF receptor coimmunoprecipitates with the erbB-2/neu receptor. In addition a cross-linked species of 360-kdalton molecular mass is also coimmunoprecipitated. The formation of the latter species is absolutely dependent on the presence of EGF receptor and thus appears to represent a heterodimer of the erbB-1 and erbB-2 receptors. In vitro kinase reaction assays revealed that receptor heterodimerization is induced by EGF binding and leads to a dramatic increase in the self-phosphorylation capacity of the dimerized receptors. Moreover, analysis of living SKBR-3 cells suggested that most of the EGF-induced transregulation of the erbB-2/neu receptor is due to receptor heterodimerization. In conclusion, heterodimers of erbB-1 and erbB-2 receptors may provide a mechanism for dual transductory functions of growth factors of breast tumor cells.

Animals

Control of lipoprotein lipase secretion by macrophages: effect of macrophage differentiation agents.

The effect of macrophage differentiation agents on lipoprotein lipase (LPL) secretion by macrophages at different stages of differentiation/maturation was investigated. Phorbol myristate acetate (TPA) had an augmenting effect on LPL secretion by in vitro-derived bone marrow macrophages (BMMs), thioglycollate-elicited peritoneal macrophages (TgM phi), and resistant macrophages. Augmentation was time dependent and reached approximately two-fold and approximately threefold increase over control cells within 16 and 96 hr, respectively. TPA did not affect LPL secretion from J774.1 cells treated with the agent for 16-72 hr. L-cell conditioned medium (L-CM), a source of macrophage colony-stimulating activity, augmented LPL secretion by BMMs and Tg-M phi, and when added together with TPA had an additive augmenting effect on LPL secretion in these cells. Retinoic acid (RA) exerted a time-dependent suppressive effect on LPL secretion by BMMs (46% within 16 hr and 83% within 6 d), had a relatively small effect on secretion from J774.1 cells (approximately 20% in 72 hr) and had no effect on LPL secretion by Tg-M phi. Dexamethasone suppressed LPL secretion by BMMs, Tg-M phi, and J774.1 cells. Optimal suppression of LPL secretion by BMMs required more than 24 hr. Thus, TPA and L-CM, agents that exert a mitogenic effect on BMMs and Tg-M phi, augmented the secretion of LPL in these cell types, and RA and dexamethasone, agents which induce differentiation patterns in myeloid cells, suppressed LPL secretion.

Animals

Dependence on Ca2+ of lipoprotein lipase stability.

Macrophages continuously secrete lipoprotein lipase (LPL) into the culture medium. When LPL was collected from thioglycollate-elicited peritoneal macrophages (Tg-Mø) or J774.1 cells over a 4 h period in Ca2+ and Mg2(+)-free Dulbecco's modified Eagle's medium (d-DMEM) the activity in the collection medium was reduced by 40-62% and 23%, respectively, as compared to that expressed in full medium (DMEM). Ca2+ supplementation during the collection period in d-DMEM augmented LPL activity in the medium; about 1 mM Ca2+ was required for attainment of activity comparable to that expressed in DMEM. Addition of Ca2+ during the assay did not enhance LPL activity collected into d-DMEM. Addition of EGTA to the assay mixture reduced LPL activity by 34-60% and when present in the collection medium, EGTA led to a reduction in enzyme activity greater than 90%. A 4 h incubation of Tg-Mø in 3 mM EGTA led to an almost complete loss of intracellular Ca2+ (measured by efflux of 45Ca2+ from preloaded cells), yet there was no change in the overall synthesis and secretion of proteins and in the phagocytic capability of the cells. LPL activity in the enzyme collection medium after its removal from cell monolayers was stable at least up to 4 h at 0 degrees C and at 23 degrees C. Activity was progressively lost with increased temperatures: up to 40% loss at 37 degrees C in 4 h. Addition of EGTA to the above medium led to an enhanced rate of irreversible enzyme inactivation: 76-86% loss of activity in 4 h at 37 degrees C. No inactivation was observed at 0 degrees C and at 23 degrees C in the presence of EGTA. The results indicate a critical role for Ca2+ in enzyme stabilization.

Animals

The association of glycosomal enzymes and microtubules: a physiological phenomenon or an experimental artifact?

Subpellicular microtubules isolated from Trypanosoma brucei parasites were fractionated on a phosphocellulose column, and the trypanosomal p52 microtubule-associated protein was eluted along with two other proteins of 41 and 36 kDa. These proteins were found to be the glycosomal enzymes aldolase (41 kDa) and glyceraldehyde-3-phosphate dehydrogenase (GAPDH, 36 kDa) by enzyme activity, antibody cross-reaction, and N-terminal sequencing. These enzymes were coprecipitated with tubulin in the presence of taxol, and aldolase had the capacity to polymerize tubulin and crosslink microtubules. Immunolocalization of anti-aldolase and anti-GAPDH antibodies did not show an interaction between these enzymes and the subpellicular microtubules. The question whether the copurification of aldolase and the subpellicular microtubules could reflect a physiological phenomenon or may be an experimental artifact is discussed.

Alkaloids

The oocyte lamin persists as a single major component of the nuclear lamina during embryonic development of the surf clam.

Nuclei and nuclear lamina-enriched fractions, isolated from 1 to 5-day-old embryos of the surf clam, Spisula solidissima, contain only one major lamin protein, which appears to be identical to the oocyte lamin (L67), as judged by 2D IEF/SDS PAGE, reactivity with a polyclonal antibody directed against L67 and 125I tryptic peptide mapping. The same protein is also present in liver, muscle, nerve and testis from adult animals. No proteins--recognized by several poly- and monoclonal antibodies, specific for somatic lamins from different vertebrate species or the oocyte lamin LIII of Xenopus- have been detected in nuclei or NL-enriched preparations, isolated from embryos or adult tissues. Synthesis of L67 is detectable in embryos 2h after fertilization; it reaches a maximum in 6h-old embryos and gradually declines thereafter. These results argue that the composition of the NL bears no obvious relationship to the structural and functional changes that take place during the embryonic development of this invertebrate.

Animals