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Biomedical subjects

M Monsigny

Publications and source records attributed to M Monsigny.

At least 145 records · Page 8Linked to original sources

Membrane lectins on human monocytes. Maturation-dependent modulation of 6-phosphomannose and mannose receptors.

Freshly isolated human monocytes, which do not contain cell-surface mannose-specific receptors, bind mannose 6-phosphate and actively endocytose mannose 6-phosphate-bearing neoglycoproteins (6-P-Man-F-BSA). Three days after isolation, human monocytes endocytose very actively 6-P-Man-F-BSA as well as Man-F-BSA, and the endocytosed neoglycoproteins are rapidly degraded. These results were obtained in quantitative flow cytofluorometry by using a panel of fluoresceinylated sugar-substituted serum albumins (neoglycoproteins). Thus, in contrast to mannose receptors which appear only after maturation, mannose 6-phosphate receptors are already present on freshly isolated human monocytes.

Carrier Proteins↗

Time course localization of immunoglobulin M monoclonal antibody and its fragments in leukemic tumor-bearing mice.

In vivo localization of a mouse monoclonal antibody (F2-10.23 IgM) binding leukemic L 1210 cells was studied in DBA/2 mice bearing an L 1210 tumor. F(ab')2 fragments were prepared and their specific binding to L 1210 cells was analyzed by flow cytofluorometry. Radio-localization studies were performed by using 125I- or 131I-labeled IgM monoclonal antibody or its F(ab')2 fragments to ascertain their capacity to visualize the L 1210 tumor. F(ab')2 fragments were cleared more rapidly than the whole IgM; the clearance was as fast in healthy as in tumor-bearing mice. The tumor-to-muscle ratio observed 24 h after injection of 125I-radiolabeled F(ab')2 fragments and 125I-radiolabeled IgM was 10; the radioactivity level in the blood with F(ab')2 fragments was lower than with IgM, and so gamma-camera imaging was workable with F(ab')2 fragments without background subtraction. The tumor localization was studied over a period of 5 days by recording the distribution of the iodinated fragments in the tumor-bearing leg compared with that in the normal leg, and by computer analysis of the region of interest. F(ab')2 fragments gave better results than intact IgM in tumor visualization. Nevertheless, the rapid clearance of this antibody or its F(ab')2 fragments make them hardly suitable as carriers of toxic drugs.

Animals↗

Detection of sugar-binding proteins in membrane-depleted nuclei.

Nuclear sugar-binding proteins were detected in membrane-depleted nuclei isolated from hamster BHK cells and mouse L 1210 leukemia cells by means of fluorescein-labelled neoglycoproteins. In fluorescence microscopy, the fluorescence was seen throughout the nucleus but was generally brighter over the nucleoli than over the rest of the nucleus. Flow cytofluorometry analysis demonstrated the presence of nuclear sugar-binding proteins for synthetic glycoproteins associated with different sugar residues. Among the nine neoglycoproteins used, four neoglycoproteins (namely alpha-rhamnosylated, alpha-glucosylated, N-acetyl-beta-glucosaminylated and alpha-mannosylated-6P-serum albumin) strongly labelled nuclei. Various controls strongly argue for the specificity of the nuclear labelling. The possibility that some of the sugar-binding proteins might correspond to endogenous nuclear lectins is considered.

Animals↗

In situ ultrastructural localization of sugar-binding sites in lizard granulosa cell nuclei.

Mannose-binding sites were detected at the ultrastructural level in nuclei of lizard granulosa cells in situ by means of mannosylated ferritin. When ultrathin sections of material embedded in glycol methacrylate were incubated with mannosylated ferritin, a strong labelling was observed over nucleoli, chromatin and the external leaflet of the nuclear envelope, but no labelling was detected in the perinuclear space except for nuclear pores. This labelling was clearly inhibited when sections were incubated in a solution containing both mannosylated ferritin and a sugar-related neoglycoprotein (mannosylated serum albumin). These ultrastructural data supporting the existence of nuclear lectin-like components in reptilian cells are in agreement with our previous findings about such components in nuclei isolated from mammalian cells. Owing to the unique organization of the granular component of the nucleoli in specialized granulosa cells, we are able to show that some of the mannose-binding sites are associated with ribosomal precursors.

Animals↗

Macrophage activation by MDP bound to neoglycoproteins: metastasis eradication in mice.

Neoglycoproteins, which bind to membrane lectins of macrophages and are selectively endocytosed, were substituted with N-acetyl-muramyldipeptide (MDP). Such MDP-conjugates are shown to be able to induce macrophage tumoricity both in vitro and in vivo in a way much more efficient than free MDP does. These MDP-neoglycoprotein conjugates are shown to protect mice against metastatic growth.

Acetylmuramyl-Alanyl-Isoglutamine↗

Detection and characterization of a selective endopeptidase from Plasmodium berghei by using fluorogenic peptidyl substrates.

By using fluorogenic peptidyl-3-amino-9-ethyl-carbazole a highly selective endopeptidase for the Val-Leu-Gly-Arg sequence was demonstrated in endoerythrocytic stages of Plasmodium berghei. Val-Leu-Gly-Arg-endopeptidase showed a maximum activity in pH range 7.0-8.0; it was completely inhibited by 1 mM leupeptin and 1 mM antipain. A complete inhibition was also obtained by 15 mM chloroquine. This trypsin-like activity was negligible in uninfected red blood cells. The high sensitive fluorogenic procedure could be performed on cell fractions, cell lysates as well as supernatants.

Amino Acid Sequence↗

Fluorescence quenching of tryptophan by trifluoroacetamide.

Trifluoroacetamide was found to be a good quencher of tryptophan fluorescence, and the quenching was shown to proceed via both a dynamic and a static process. The respective quenching constants were determined by the measurement of the decrease of the fluorescence lifetime in the presence of the quencher. The static and the bimolecular rate quenching constants of N-acetyltryptophanamide are equal to 0.34 1 X mol-1 and 1.9 X 10(9) 1 X mol-1 X s-1, respectively. These values indicate that trifluoroacetamide is an efficient quencher of tryptophan fluorescence. This conclusion is also supported by a complete quenching of bovine serum albumin and wheat germ agglutinin fluorescence. In the case of lysozyme, trifluoroacetamide quenches the fluorescence of tryptophan residues which fluoresce with a maximum at 348 nm but not the buried tryptophan residues which fluoresce with a maximum at 333 nm. Trifluoroacetamide quenching of wheat germ agglutinin emission confirms the homogeneity and the high accessibility of emitting tryptophan residues, in agreement with a previous report (Privat, J.P. and Monsigny, M. (1975) Eur. J. Biochem. 60, 555-567). The tryptophan fluorescence decay of wheat germ agglutinin is biexponential even in the presence of the quencher; the static and bimolecular rate quenching constants are equal to 0.22 1 X mol-1 and 0.92 X 10(9) 1 X mol-1 X s-1, respectively. In the presence of a specific lectin ligand, the methyldi-N,N'-trifluoroacetyl-beta-chitobioside, the quenching of wheat germ agglutinin fluorescence involves a direct contact between tryptophan residues and trifluoroacetamido groups of the ligand and in contrast with the quenching induced by free trifluoroacetamide shows that the tryptophan fluorescence is not fully quenched.

Acetamides↗

Tumoricidal activation of murine alveolar macrophages by muramyldipeptide substituted mannosylated serum albumin.

Rat and mouse alveolar macrophages have almost no spontaneous tumoricidal activity and are only slightly activated by muramyldipeptide (MDP). When MDP was carried by serum albumin, the activation was higher than with free MDP but only at high concentration. When MDP was bound to a neoglycoprotein (mannosylated serum albumin) - which binds to the sugar binding receptor at the macrophage cell surface and is actively endocytosed - the activation of rat or mouse alveolar macrophages is dramatically enhanced even at very low concentration of neoglycoprotein -bound MDP. Furthermore, neoglycoprotein -bound MDP injected i.v. or i.p. was found to be able to activate alveolar macrophages, the activity of which was maximal after 48 hours in mice and 72 hours in rats. Such conjugates have so potential values as new immunostimulant agents in cancer and parasite therapy.

Acetylmuramyl-Alanyl-Isoglutamine↗

The binding of monosaccharides to wheat germ agglutinin: fluorescence and NMR investigations.

The synthesis of N-acetyl- and N-trifluoroacetyl-glucosaminides was reported. The interaction of these compounds with wheat germ agglutinin, a plant lectin specific for N-acetyl-glucosamine and sialic acid, was investigated by two complementary approaches: 1H and 19F NMR, and fluorescence spectroscopy. This last technique relies on the existence of a competitive equilibrium involving the protein, the ligand and O-(methylumbelliferyl)-N-acetyl-glucosaminide, a fluorescent saccharide. The binding constants and the chemical shifts in the complex were determined and were related to the protein structure.

Chemical Phenomena↗

Tumor localization of Lewis lung carcinoma with radiolabeled monoclonal antibodies.

Mouse 6D6 IgG2a and 5B5 IgM monoclonal antibodies which specifically bind murine lung carcinoma cells (3LL cells) were injected to healthy and tumor-bearing mice. In vivo localization was analyzed by counting the tissue radioactivity and by external gamma ray scintigraphy at various times after IV injection of 125I- or 131I-labeled antibodies. The clearance of the two monoclonal antibodies was not modified by the presence of the tumor, and the 6D6 IgG2a was cleared at a rate slower than the 5B5 IgM. Both antibodies gave a high specific uptake at the tumor level; the tumor-to-healthy tissue ratios were higher with the 6D6 IgG2a than the 5B5 IgM; unspecific mouse immunoglobulins (IgG2) did not localize in the tumor. The amount of 6D6 IgG2a antibody still associated with the tumor after 2 days following IV injection was 10 times higher than that of 5B5 IgM, and was still high enough to localize the tumor after 5 days. Imaging experiments confirmed the ability of 6D6 IgG2a to detect the presence of tumor cells. The targeting kinetics determined by computer analysis of camera images indicated a rapid targeting of antibodies in tumor with a maximal concentration after 4-6 h; after 48 h the background was quite low and the 6D6 IgG2a appeared to be specifically localized in the tumor.

Animals↗

Selective macrophage activation by muramyldipeptide bound to monoclonal antibodies specific for mouse tumor cells.

IgM monoclonal antibodies directed against tumor cells which do not mediate antibody-dependent macrophage cytotoxicity (ADMC) even when they are cytotoxic in the presence of complement, have been shown to render macrophages tumoricidal when they carry an immunomodulating agent, i.e., muramyldipeptide (MDP). This statement is based on experiments using two IgM monoclonal antibodies selected for their ability to bind L1210 leukemia cells (F2-10-23-IgM) and 3LL Lewis lung carcinoma cells (6B6-IgM) specifically, as shown by flow cytofluorometry analysis. The MDP-IgM conjugates, containing 45 MDP molecules per IgM molecule, were prepared by allowing MDP-hydroxy-succinimide ester to react with IgM monoclonal antibodies. The MDP-IgM conjugates are shown to bind to relevant tumor cells and to induce the activation of thioglycolate-elicited peritoneal mouse macrophages leading to 80% growth inhibition of target cells at optimum concentrations of bound MDP. These concentrations of bound MDP were 10 times lower than the concentration of free MDP, giving a maximum activation that is limited to 20% growth inhibition. No macrophage activation was evidenced when tumor cells were incubated in the presence of irrelevant MDP-IgM conjugates and macrophages or when macrophages were preincubated in the presence of MDP-IgM conjugates and then incubated in the presence of relevant or irrelevant tumor cells but in the absence of the MDP-IgM conjugates. The reported results are discussed with reference to the mechanism of activation of macrophage by muramyldipeptide and to the usefulness of such MDP-IgM conjugates as potential antitumor agents in cancer therapy.

Acetylmuramyl-Alanyl-Isoglutamine↗

Monoclonal antibodies (IgM) against a murine carcinoma, Lewis lung carcinoma (3LL): production, purification and in vitro selectivity.

C57BL/6 mice were immunized against a syngeneic murine carcinoma, Lewis lung carcinoma (3LL). Monoclonal antibodies were prepared by fusing spleen cells of immunized mice with SP2-O-Ag mouse myeloma cells. Hybridoma clones producing anti-3LL antibodies were selected on the basis of a solid-phase radioimmunoassay. Two clones were selected and subcloned to give the 5B5 and the 6B6 hybrid lines which were found to secrete IgM monoclonal antibodies. Large quantities of monoclonal antibodies were purified from ascitic fluids by gel filtration chromatography. Specificities of these antibodies were tested on 3LL tumor cells, 3LL metastases, lymphoid cells and leukemic L1210 cells. The 5B5 IgM monoclonal antibody was found to be selectively directed against primary tumor cells and metastatic cells.

Animals↗

Uptake of neoglycoproteins via membrane lectin(s) of L1210 cells evidenced by quantitative flow cytofluorometry and drug targeting.

The presence and the sugar specificity of membrane lectins on the cell surface of mouse L1210 leukemia cells were demonstrated by using various neoglycoproteins (glycosylated serum albumin) substituted with fluorescein or methotrexate. Neoglycoproteins were prepared by reaction of glycosidophenylisothiocyanates with bovine serum albumin. The binding of neoglycoproteins to L1210 cells depends on the nature of the carried sugar and on the number of bound sugar residues per neoglycoprotein molecule. The best results were obtained with fucosylated serum albumin containing 25 +/- 5 residues of fucose. The amount of cell-associated fluorescein-labeled neoglycoproteins was several fold higher at 37 degrees C than at 4 degrees C suggesting a specific endocytotic process. The membrane lectin-mediated endocytosis was further demonstrated by showing that the cell-associated fluorescence upon cell incubation in the presence of fluorescein-labeled neoglycoproteins at 37 degrees C increased several fold after addition of monensin, a proton/sodium ionophore known to raise the pH of endosomes and lysosomes. The analysis of fluorescein-labeled neoglycoproteins association to the L1210 cells were achieved by quantitative flow cytofluorometry after standardization with calibrated polystyrene sulfonate beads carrying various amounts of 1-(fluoresceinylthioureido)-4,8-diazalicosane. In addition, the cytotoxicity of neoglycoprotein-bound methotrexate was shown to be related to the presence and to the nature of the carried sugar: fucosylated serum albumin was shown to be the most efficient neoglycoprotein carrier, and to have a cytotoxicity close to that of anti L1210 cell IgM monoclonal antibody carrying methotrexate.

Animals↗

Two galactose-specific receptors in the liver with different function.

In the rat liver both hepatocytes and macrophages have been shown to express on the surface lectins with similar binding specificity for galactose residues. Functionally the two lectins differ in the uptake of ligands. Whereas the hepatocytes ingest molecules and small particles (less than 10 nm), the macrophages take up particles only. Antisera raised against hepatic galactose-specific receptor failed to react with the macrophage lectin but blocked ligand binding to the hepatocyte only, indicating either a different antigenic structure or membrane localization of the two lectins.

Animals↗

Sensitive fluorometric determination of plasminogen activator in cell lysates and supernatants.

A fluorogenic substrate for plasmin, CBZ-Gly-Pro-Arg-AEC, has been synthesized and used to develop a new sensitive photometric and fluorometric assay of plasminogen activator activity. The fluorescence intensity of free AEC at 460 nm is about 3 orders of magnitude higher than that of acyl-AEC. The release of AEC from the peptidyl derivative was monitored fluorometrically after extraction of free AEC in ethylacetate. Under such conditions, the Km was 0.16 mM. This method was used to monitor the activity of plasminogen activator synthetized by fibroblastic cells (BHK 21 C 13) either released in the supernatants or cell-associated.

Animals↗

Protein-sugar interactions: environmental effect on the fluorescence of O-(4-methylumbelliferyl)-glycosides.

We have investigated the effect of 12 solvents and several amino acids on the fluorescence of O-(4-methylumbelliferyl)-glycosides. We showed that: i) the fluorescence quenching is not related to the dielectric constant of the solvents: the fluorescence intensity was maximal in water (d = 80) and in acetic acid (d = 6.2) and was at least ten times lower in acetone (d = 21) and in dioxane (d = 2.2); ii) the fluorescence of O-(4-methylumbelliferyl)-N-acetyl-beta-glucosaminide is not quenched in the presence of various amino acids including arginine, asparagine, aspartate, histidine, leucine, phenylalanine and proline; iii) the fluorescence of O-(4-methylumbelliferyl)-glycoside is quenched by sulfur, phenol and indole amino acids or derivatives containing sulfur, phenol or indole groups. The changes in fluorescence intensities of O-(4-methylumbelliferyl)-glycosides upon binding to concanavalin A, wheat germ agglutinin and lysozyme are discussed with regard to the amino acid content of their binding sites.

Amino Acids↗

Sugar-specific endocytosis of glycoproteins by Lewis lung carcinoma cells.

Lewis lung carcinoma cells from tumors, metastasis nodules, or from culture bind fluorescent derivatives of neoglycoproteins containing alpha-D-glucose residues: This binding is competitively inhibited by neoglycoproteins containing alpha-D-glucose, by mannan, and by several other neoglycoproteins. Cell binding and uptake of the fluorescent derivatives of the neoglycoproteins was quantified by lysing the cells with an alkylpolyol (MAC 19 or MAC 18) and measuring the fluorescence intensity of the supernatant. The amount of cell-associated neoglycoprotein was higher at 37 degrees C than at 4 degrees C with LLC from tumor. The binding and uptake were inhibited by glycoconjugates containing alpha-D-glucose. These results suggest the presence of sugar specific receptors in Lewis lung carcinoma cells which are involved in a sugar-specific binding and endocytosis phenomenon. The implication of the existence of a carbohydrate-binding protein on the surface of Lewis lung carcinoma cells are discussed with regard to the in vivo behaviour of these cells, especially in relation to their metastatic properties and to the possibility of using neoglycoproteins as specific carriers of cytotoxic drugs. Hybrid molecules of gelonin and neoglycoprotein containing alpha-D-glucose were used as targetted toxin: The targetted toxin was found to bind to and to enter the intact cells and was 100 times more toxic than free drug.

Animals↗