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Biomedical subjects

F Martin

Publications and source records attributed to F Martin.

At least 19 recordsLinked to original sources

Role of glycosylation on the secretion and biological activity of erythropoietin.

The erythropoietin (EPO) molecule contains four carbohydrate chains. Three contain N-linkages to asparagines at positions 24, 38, and 83, and one contains an O-linkage to a serine at position 126. We constructed human EPO variants that eliminated the three N-glycosylation sites by replacing the asparagines with glutamines singly or in combination. The O-linked carbohydrate chain was removed by replacing the serine with glutamine, valine, histidine, or alanine. A variant with a double mutation (Gln38,83) and another with a triple mutation (Gln24,38,83) were secreted poorly from COS1 and CHO cells even though RNA encoding these variants was present. All other variants with mutations in N-linked glycosylation sites were secreted normally. Removal of any of the N-glycosylation sites reduced the in vivo but not the in vitro biological activity of the EPO molecule. All the mutations at Ser126, the O-glycosylation site, were secreted normally. In vitro activity was also unaffected except for Ala126 which had a 50-fold decrease. The Val126 variant was tested in vivo, and its specific activity was only slightly less than that of the native EPO, which indicates that the O-linked carbohydrate is not essential for activity.

Animals

Evidence that stem cell factor is involved in the rebound thrombocytosis that follows 5-fluorouracil treatment.

The mechanisms responsible for 5-fluorouracil (5FU)-induced rebound thrombocytosis are not completely understood. SI/SI(d) mice, which do not undergo rebound thrombocytosis in response to 5FU, provide a genetic approach to the study of this phenomenon. Recent reports by several groups that the SI locus encodes a protein known variably as stem cell factor (SCF), mast cell growth factor, or kit ligand, suggests the possibility that the lack of wild-type SCF in SI/SI(d) mice is responsible for their defective response to 5FU-induced thrombocytopenia. It is shown in this report that SCF-treated SI/SI(d) mice are as capable as their wild-type littermates in undergoing rebound thrombocytosis. W/Wv mice, mutated at the locus encoding the SCF receptor, also do not undergo rebound thrombocytosis, but are not responsive to SCF treatment. In normal mice, it is shown by RNA solution hybridization that SCF mRNA expression is increased during the 5FU-induced platelet nadir period. It is also shown by autoradiography that maturing megakaryocytes express SCF receptors, and that in vivo administration of SCF significantly raises the numbers of megakaryocytes, as well as circulating platelet counts. Taken together, these data indicate that SCF may be an important regulator of platelet production under both normal and physiologically disturbed situations.

Animals

Therapy of primary and metastatic mouse mammary carcinomas with doxorubicin encapsulated in long circulating liposomes.

The purpose of our study was to compare the therapeutic effects of doxorubicin in 3 different formulations: (1) in PBS, (2) in conventional liposomes composed of egg phosphatidylglycerol/egg phosphatidylcholine/cholesterol/dl-alpha tocopherol, and (3) in sterically stabilized, long-circulating "Stealth" liposomes composed of hydrogenated soy phosphatidylcholine/cholesterol/polyethylene glycol-distearoylphosphatidylethanolamine. The doxorubicin formulations were used to treat recently implanted and well-established, growing primary mouse mammary carcinomas, and to inhibit the development of spontaneous metastases from intra-mammary tumor implants. In the treatment of recently implanted primary tumors, the formulations were given in 3 i.v. injections over 15 days, starting 3 or 10 days after tumor implantation. In the treatment of well-established primary tumors, the mice received 4 i.v. injections over 22 days, starting an average 38 days after tumor implantation. In the preventive treatment against metastases, the formulations were given in 4 i.v. injections over 22 days, starting 22 days or 58 days after primary tumor implantation. The Stealth liposome formulation was significantly more effective than the conventional liposome formulation or the free drug in reducing the incidence of metastases from intra-mammary implants of tumor MC19 and tumor MC65, in curing mice with recent implants of tumor MC2A, tumor MC2B, and tumor MC65, and in increasing the 8-week survival of mice with well-established implants of tumor MC2B. It is concluded that the long circulation time of the Stealth liposome doxorubicin formulation accounts for its superior therapeutic effectiveness.

Animals

Effects of cyclosporine A on cyclic AMP generation and GTP-binding proteins in isolated islets.

The role of cyclosporine A (CsA) in cAMP generation and its relationship with guanine nucleotide-binding proteins (G-proteins) was investigated in isolated islets. cAMP accumulation in response to glucose, 3-isobutyl-1-methyl-xanthine (a phosphodiesterase inhibitor) and the calcium ionophore A23187 increased significantly (P less than 0.05) in the presence of 0.5 microgram/mL CsA. CsA (0.5 microgram/mL) was unable to affect the 2.1-fold increase in cAMP formation induced by 30 microM forskolin (an adenylate cyclase complex activator). The pertussis toxin-induced cAMP generation in the presence of 20 mM glucose was suppressed by CsA by 34%. On the other hand, CsA enhanced cAMP levels in cholera toxin-treated islets. CsA caused a non-competitive inhibition of phosphodiesterase activity with half-maximal inhibition at 5 micrograms/mL CsA. CsA blocked the pertussis toxin ADP-ribosylation of a 41-kDa and a 21-kDa islet protein, but not the cholera toxin ADP-ribosylation of a 45-kDa and a 21-kDa islet protein. These data indicate that CsA increases cAMP content by a non-competitive inhibition of phosphodiesterase activity and by acting through G-proteins involved in the modulation of adenylate cyclase activity. An inhibitory effect of CsA on a 21-kDa pertussis toxin-sensitive G-protein was also observed.

Adenylate Cyclase Toxin

Nonhematopoietic tumor cell lines express stem cell factor and display c-kit receptors.

Human stem cell factor (SCF) acts in the presence of other growth factors to stimulate the growth of primitive hematopoietic progenitor cells. These effects are performed by activation of the SCF receptor, c-kit. Because of the potential use of SCF in patients undergoing chemotherapy and bone marrow transplantation, the effect of SCF on nonhematopoietic tumors requires investigation. To determine whether human tumor cell lines display c-kit receptors, we performed binding experiments with 125I-SCF on a breast carcinoma cell line (Du4475), a gastric carcinoma cell line (KATO III), a melanoma cell line (HTT144), as well as two small cell lung carcinoma cell lines (H69 and H128). The biologic effect of SCF on tumor cell lines was assessed by its ability to stimulate tritiated thymidine uptake and to enhance colony growth in methylcellulose. The breast carcinoma cell line, Du4475, as well as two small cell lung carcinoma cell lines, H69 and H128, exhibit high-affinity c-kit receptors with approximate binding affinities of 40, 100, and 90 pmol/L, respectively. The number of high-affinity receptors per cell ranged from 700 to 9,500. The gastric carcinoma cell line, as well as the melanoma cell line, showed trace binding of 125I-SCF. In the presence of SCF alone, or in combination with granulocyte-macrophage colony-stimulating factor or interleukin-3, there was less than a 17% increase in the colony growth of Du4475, H69, or H128 cell lines. Postulating that the lack of growth response could be secondary to endogenous SCF production by the tumor cell lines, we used an RNAse protection assay to determine whether the tumor cell lines contain SCF messenger RNA (mRNA). In addition, we tested tumor cell line supernatants for the presence of secreted SCF protein by enzyme immunoassay, and analyzed the tumor cell lines for membrane-bound SCF by indirect immunofluorescence. Our results show that the Du4475, H69, and H128 cell lines, as well as a melanoma cell line (HTT144), have multiple copies of SCF mRNA. Soluble SCF protein was detected in the cell supernatants in the Du4475 and H69 cell lines and SCF was found on the surface of all four cell lines. These data show that some human solid tumor cell lines display high-affinity c-kit receptors and produce SCF, which can be detected on the cell surface. These results suggest the possibility that autocrine production of SCF by c-kit receptor-bearing tumor cells may enhance cell growth in tumor cell lines.

Animals

Characterization of a specific erythromegakaryocytic enhancer within the glycoprotein IIb promoter.

The gene coding for glycoprotein IIb (GPIIb), the alpha subunit of platelet integrin GPIIb/IIIa is an early and specific marker of the megakaryocytic lineage. Thus, studies on the regulation of this gene may provide helpful information on the mechanisms controlling cell specificity and differentiation in this lineage. The promoter region of this gene was isolated and analyzed to understand its tissue-specific transcriptional activity. A region extending from nucleotides -414 to -554 was found to be extremely important for the promoter function. Deletion of this region results in a 70% decrease of the promoter activity, as measured in CAT assays. This region has the properties of an enhancer. It is able to activate a heterologous promoter, in a distance- and orientation-independent manner, in both megakaryocytic and erythroid cells. This enhancer contains binding sites for nuclear factors and mutation of these sites, individually or together, abolish the enhancer activity. These nuclear factors are present in megakaryocytic and erythroid cell lineages, but they are absent in the other tested cells. One of the sites, named domain D, contains a TTATC motif that may interact with the transcription factor GATA1, active in erythroid and megakaryocytic cells. These results indicate that the promoter of a megakaryocytic gene contains a tissue specific enhancer, active in both the erythroid and the megakaryocytic lineages, and may implicate the erythroid factor GATA1.

Base Sequence

[Intra-alveolar hemorrhages in systemic diseases].

Alveolar haemorrhage is usually, but often belatedly, diagnosed in patients presenting with haemoptysis and radiological alveolar syndrome. Its occurrence frequently marks a turn for the worst in the course of a systemic disease, since its prognosis is sombre. Recognizing its early signs might enable treatment to be instituted and prognosis to be improved. In the presence of typical alveolar haemorrhage, if high-dose corticosteroid therapy and immunosuppressants do not improve the symptoms within 48 hours plasmapheresis must be started. Alveolar haemorrhage must be considered a vital emergency justifying this therapeutic approach without waiting for the hypothetical diagnosis of the underlying systemic disease.

Adolescent

Cinchonine, a potent efflux inhibitor to circumvent anthracycline resistance in vivo.

Circumvention of multidrug resistance is a new field of investigation in cancer chemotherapy, and safe and potent multidrug resistance inhibitors are needed for clinical use. We investigated several analogues of quinine for their ability to increase anthracycline uptake in resistant cancer cells. Cinchonine was the most potent inhibitor of anthracycline resistance in vitro, and its activity was little altered by serum proteins. Serum from rats treated with i.v. cinchonine produced greater uptake of doxorubicin in cancer cells (DHD/K12/PROb rat colon cells and K562/ADM human leukemic cells) than did serum from quinine-treated rats (ex vivo assay). Cinchonine was more effective than quinine in reducing tumor mass and increasing the survival of rats inoculated i.p. with DHD/K12/PROb cells and treated i.p. with deoxydoxorubicin. Moreover, the acute toxicity of cinchonine in rats and mice was lower than that of other quinine-related compounds. The lower toxicity and greater potentiation of in vivo anthracycline activity produced by cinchonine are favorable characteristics for its use as an anti-multidrug resistance agent in future clinical trials.

Animals

Crystallization of aspartyl-tRNA synthetase-tRNA(Asp) complex from Escherichia coli and first crystallographic results.

Crystals of the dimeric aspartyl-tRNA synthetase from Escherichia coli (molecular mass 132,000 Da) complexed with its cognate tRNA (molecular mass 25,000 Da) have been grown using ammonium sulfate as precipitant. The crystals belong to the orthorhombic space group C222(1) with unit cell parameters a = 102.75 A, b = 128.11 A, c = 231.70 A and diffract to 3 A. The asymmetric unit contains one monomer of the aspartyl-tRNA synthetase and one tRNA molecule.

Aspartate-tRNA Ligase

Histological reactivity of a monoclonal antibody against rat colon cancer cells on human and rat normal gut and colonic tumours.

A monoclonal antibody, F11C, was raised against rat colon cancer cells. Its immunoreactivity on normal human and rat gut as well as human and rat colonic tumours was studied by the avidin-biotin-peroxidase complex technique. In both normal rat and human gastrointestinal tract, F11C stained surface epithelial cells from the fundus to distal colon, mainly as supranuclear vesicles. These vesicles appeared to be part of the Golgi apparatus on electron microscopy with immunogold labelling. Twenty primary rat colon tumours and 28 of 43 human colon tumours were also stained, with a heterogeneous pattern but much more strongly than the normal colonic mucosa. Biochemical purification suggested that in rat tumours F11C epitope was carried by a high molecular weight glycoprotein. Absorption experiments with synthetic oligosaccharides showed that F11C monoclonal antibody reacted with blood group A-related oligosaccharides. Nevertheless, F11C reactivity on human tissues was not related to the individual ABO or Lewis phenotype.

1,2-Dimethylhydrazine

Effects of cyclosporin A on induced HIT cell alkalinization.

We studied whether therapeutic doses of cyclosporin A (CsA) modify the effects of nutrient and non-nutrient stimuli on pHi, in the insulin-secreting beta-cell line HIT-T15. Glucose caused a transient acidification, followed by alkalinization. CsA failed to block this alkalinization. PMA elicited a gradual alkalinization by a protein kinase C mediated mechanism which is not inhibited by CsA. The depolarization with high K+ was associated with a rise in pHi. CsA was able to completely block this increase in pHi. Ionomycin induced a rapid cytosolic alkalinization partially inhibited by CsA. We conclude that in HIT-T15 cells, therapeutical doses of CsA inhibit the Ca(2+)-dependent pathway of Na+/H+ antiport activation but not protein kinase C activation of this exchanger.

Animals

Effect of some climatic factors on violent and non-violent suicides in Belgium.

We explored the differential effect of some climatic factors such as temperature, atmospheric pressure, sunlight duration and humidity grade on the temporal distribution of violent and non-violent suicides, accidental and undetermined causes of death as well as homicides in Belgium, between 1969 and 1984. Our study indicates that temperature and sunlight duration are specifically associated with the probability of violent suicide, while deaths due to non-violent causes (such as non-violent suicides) did not show any relationship to climatic factors.

Accidents

P300 and traffic scenes: the effect of temazepam.

The present research investigated the effects of a minor tranquillizer (temazepam) on P300 in a paradigm that may be relevant for traffic behaviour. Because accident scenes have not been used previously in P300 research, Experiment 1 (n = 8) examined whether the P300 elicited by safe traffic scenes and scenes of imminent road accidents were sensitive to the probability of occurrence. Event-related potentials were recorded from C3, Cz, C4, P3, Pz and P4 within an oddball paradigm. The type of stimulus to which subjects responded (pictures of imminent accidents or safe road scenes) was crossed with the probability (0.1 or 0.5) of the relevant (to which a response was required) event. The results indicated that P300 amplitude increased with decreasing probability of the relevant stimulus and that P300 was most pronounced at Pz. Experiment 2 (n = 12) employed a drug treatment (10 mg temazepam) and a placebo treatment (100 mg Vitamin E). An oddball paradigm with a probability of the relevant stimulus of 0.1 was used and P300 was recorded from Cz, C3, C4, Pz, P3 and P4. Generally, the ingestion of temazepam decreased P300 amplitude and increased P300 latency at all sites. Reaction time, on the other hand, was not influenced by drug administration. The data demonstrate the clear effect of minor tranquillizers on the psychological processes associated with P300.

Accidents, Traffic

Plasminogen receptors on rat colon carcinoma cells.

Cells from rat carcinoma cell lines PROb (giving progressive tumours) and REGb (giving regressive tumours) have cell surface receptors which bind specifically rat plasminogen and plasmin. Affinity for Pg was found to be higher in PROb (Kd = 10(-7) M) than in REGb cells (Kd = 5.10(-7) M) but with a concomitant decrease in the number of binding sites, 0.9 x 10(6)/cell (range from 0.6 to 1.2 x 10(6)) in PROb vs 3.6 x 10(6)/cell (range 1.2 to 6 x 10(6)) in REGb cells. The number and the affinity of binding sites varied in an opposite way in PROb and REGb cells. The difference in affinity parameters was unrelated to the degree of invasiveness of tumour cells in syngenetic rats. Bound plasmin retained its enzymatic activity, which indicates that its binding does not involve the catalytic active site. In cell solubilisates plasminogen receptor appeared as one major band situated in the area of 50-60 kDa.

Animals

Characterization and subcellular localization of calcium-dependent phospholipid binding proteins (annexins) in normal human skin and reconstituted epidermis.

Annexins represent a widespread family of Ca(++)-dependent phospholipid binding proteins. Although their precise functions are still unknown, they probably play an important role in cell regulation because they are major substrates for various growth factor receptor kinases. We characterized annexins in human skin using three different antisera raised against annexin II, annexin V, and a synthetic peptide that resembles the consensus sequence of all annexins. In normal human skin, using SDS-PAGE, two-dimensional gel electrophoresis and immunoblot analysis, we identified two major 34-kDa proteins and one 36-kDa protein, with respective isoelectric points of 6.5, 5.2, and 7.2-7.9. According to these criteria they were identified as annexins, I, V, and II, respectively. Minor 45-51 kDa and 68-kDa proteins with 6.1-6.7 and 6.8-7.1 isoelectric points were also present, and likely corresponded to annexins VII and VI, respectively. We investigated the ability of these proteins to bind phospholipids in the presence of calcium using liposomes formed from a mixture of phosphatidylserine and phosphatidylcholine. The cellular distribution of annexins in normal human skin was determined by immunofluorescence with antiannexin II and anti-annexin V antibodies. Labeling with both antibodies was observed predominantly at the cell membrane with some cytoplasmic staining also being apparent. Specificity was confirmed by the absence of staining using pre-immune sera or after the absorption of the antibodies with their corresponding antigens. These proteins were also characterized in vitro in a reconstituted human skin model. All were present in this system except annexin VI and VII, which were lost after phospholipid purification. Further experiments should now be carried out using this system to clarify the role and regulation of these proteins within the epidermis.

Annexin A5

Attributional style and depression: a controlled comparison of remitted unipolar and bipolar patients.

Attributional style was investigated in remitted affective disorder patients (23 unipolars and 26 bipolars) and 26 non-psychiatric controls. We found a specific cognitive vulnerability in unipolars. Unipolars attributed negative events to causes that were more stable--but not more internal nor more global--than bipolars and controls, and did not attach more importance to these events. Attributional vulnerability seemed more apparent in patients with longer histories of depression.

Adult

Induction of interleukin-1 and tumor necrosis factor alpha in brain cultures by human immunodeficiency virus type 1.

Cytokines such as interleukin-1 (IL-1) and tumor necrosis factor alpha (TNF alpha) are produced by leukocytes and play a role in immune responses. They also function in normal brain physiology as well as in pathological conditions within the central nervous system, where they are produced by brain macrophages (microglia) and brain astrocytes. In this study, we document the ability of human immunodeficiency virus type 1 (HIV-1) to induce TNF alpha and IL-1 in primary rat brain cultures. While productive infection did not occur in these cells, it was not required for cytokine induction. Using monocyte/macrophage-tropic (JRFL) and T-cell-tropic (IIIB) strains of HIV-1, we were able to induce cytokines in both microglia and astrocytes. In addition to whole virus, recombinant envelope proteins also induced these cytokines. The induction of IL-1 and TNF alpha could be blocked by a panel of antibodies recognizing epitopes in the gp120 and gp41 areas of the envelope. Soluble recombinant CD4 did not block TNF alpha and IL-1 production. If TNF alpha and IL-1 can be induced in brain tissue by HIV-1, they may contribute to some of the neurologic disorders associated with AIDS.

Animals

Overexpression of Mos, Ras, Src, and Fos inhibits mouse mammary epithelial cell differentiation.

Mammary epithelial cells terminally differentiate in response to lactogenic hormones. We present evidence that oncoprotein overexpression is incompatible with this hormone-inducible differentiation and results in striking cellular morphological changes. In mammary epithelial cells in culture, lactogenic hormones (glucocorticoid and prolactin) activated a transfected beta-casein promoter and endogenous beta-casein gene expression. This response to lactogenic hormone treatment was paralleled by a decrease in cellular AP-1 DNA-binding activity. Expression of the mos, ras, or src (but not myc) oncogene blocked the activation of the beta-casein promoter induced by the lactogenic hormones and was associated with the maintenance of high levels of AP-1. Mos expression also increased c-fos and c-jun mRNA levels. Overexpression of Fos and Jun from transiently transfected constructs resulted in a functional inhibition of the glucocorticoid receptor in these mouse mammary epithelial cells. This finding clearly suggests that glucocorticoid receptor inhibition arising from oncogene expression will contribute to the block in hormonally induced mammary epithelial cell differentiation. Expression of Src resulted in the loss of the normal organization and morphological phenotype of mammary epithelial cells in the epithelial/fibroblastic line IM-2. Activation of a conditional c-fos/estrogen receptor gene encoding an estrogen-dependent Fos/estrogen receptor fusion protein also morphologically transformed mammary epithelial cells and inhibited initiation of mammary epithelial differentiation-associated expression of the beta-casein and WDNM 1 genes. In response to estrogen treatment, the cells displayed a high level of AP-1 DNA-binding activity. Our results demonstrate that high cellular AP-1 levels contribute to blocking the ability of mammary epithelial cells in culture to respond to lactogenic hormones. This and other studies indicate that the oncogene products Mos, Ras, and Src exert their effects, at least in part, by stimulating cellular Fos and probably cellular Jun activity.

Animals