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Biomedical subjects

D Migliore-Samour

Publications and source records attributed to D Migliore-Samour.

At least 19 recordsLinked to original sources

Specific binding sites on human phagocytic blood cells for Gly-Leu-Phe and Val-Glu-Pro-Ile-Pro-Tyr, immunostimulating peptides from human milk proteins.

Two immunostimulating peptides were isolated from human milk proteins by enzymatic digestion, the tripeptide GLF and the hexapeptide VEPIPY. These peptides increased the phagocytosis of human and murine macrophages and protected mice against Klebsiella pneumoniae infection. The present study showed that this activity may be correlated to the presence of specific binding sites on human blood phagocytic cells. The receptor molecules implicated were different for the two peptides. [3H]GLF specifically bound to PMNL and monocytes, whereas [3H]VEPIPY only bound to monocytes. The leukemic promyelocytic cell line HL-60 differentiated into granulocytes or into macrophages (depending on inducer used) coroborated these results. Specific binding of [3H]GLF on plasma membrane preparations of human PMNL (20 degrees C) was saturable and Scatchard analysis indicated two classes of binding sites: high-affinity sites of Kd 2.3 +/- 1.0 nM and Bm 60 +/- 9 fmol/mg protein and low-affinity sites of Kd 26.0 +/- 3.5 nM and Bm 208 +/- 45 fmol/mg protein. [3H]GLF binding was inhibited in a concentration-dependent manner by various analogous peptides, such as LLF, GLY, LLY and RGDGLF, but not by RGD, RGDS, VEPIPY and the chemotactic peptide f-Met-Leu-Phe (f-MLF). Only at high concentrations the direct analog MLF competed with labeled GLF. An important inhibitory effect was also observed with C1q component of the complement whereas C3 and BSA were uneffective. Specific binding of [3H]VEPIPY on monocyte membranes (20 degrees C) was saturable and Scatchard analysis was consistent with one class of binding sites of Kd 3.7 +/- 0.3 nM and Bm 150 +/- 6 fmol/mg protein.

Adjuvants, Immunologic

Effects of tripeptides derived from milk proteins on polymorphonuclear oxidative and phosphoinositide metabolisms.

The tripeptide GLF (glycyl-leucyl-phenylalanine) was isolated from human milk proteins. This peptide increased phagocytosis by human and murine macrophages and protected mice against Klebsiella pneumoniae infection. Specific binding sites on human polymorphonuclear leukocytes (PMNs) have been demonstrated recently. The aim of the present research was to study the action of this peptide on rat and human PMN oxidative burst and to investigate the consequences of cell stimulation on polyphosphoinositide hydrolysis. A biphasic stimulating concentration-dependent effect of GLF on PMN chemiluminescence and superoxide anion generation was demonstrated. One of the peaks of the oxidative response occurred around 10(-9) M, which correlates with the Kd of high affinity receptors of GLF. The other maximum, around 10(-4) M, might be due to the hydrophobic nature of the tripeptide. O2- generation mimicked the phorbol myristate acetate response: after a lag period of 2-5 min, O2- release gradually increased for 10-15 min until a plateau was reached. Furthermore, GLF enhanced phosphoinositide breakdown with maximal IP3 production at 10(-7) M. Various analogs of GLF were synthesized in order to define the relative importance of the different amino acids and their position in the tripeptide molecule: glycyl-phenylalanine-leucine was devoid of biological properties but enhanced the activity of GLF on the metabolic burst at high concentrations; peptides leucyl-leucyl-phenylalanine and leucyl-leucyl-tyrosine, which displaced GLF from its specific membrane receptors, exerted stimulating effects on PMN oxidative and phosphoinositide metabolisms. It is quite conceivable that these short peptides, which may be generated in the newborn during digestion and which are able to stimulate phagocytic cells, are implicated in the defense of the neonate immature organism against infection.

Animals

Isolation, amino acid sequence, and synthesis of dermaseptin, a novel antimicrobial peptide of amphibian skin.

A 34-residue antimicrobial peptide named dermaseptin was purified to homogeneity from amphibian skin by a 3-step protocol involving molecular sieve filtration, ion-exchange chromatography, and reversed-phase high-performance liquid chromatography. The complete amino acid sequence of dermaseptin, ALWKTMLKKLGTMALHAGKAALGAAADTISQGTQ, was determined by automated Edman degradation of the peptide and of fragments generated by trypsin. Fast atom bombardment mass spectra of dermaseptin gave a protonated molecular ion m/z 3455.4 which matched the theoretical molecular weight predicted from the amino acid sequence. Dermaseptin was synthesized by the solid-phase method. The synthetic replicate was shown to be indistinguishable from natural dermaseptin with respect to chromatographic properties, amino acid sequence determination, and mass spectrometry analysis. Dermaseptin is a water-soluble, thermostable, and nonhemolytic peptide endowed with highly potent antimicrobial activity against pathogenic fungi at micromolar concentration. Circular dichroism spectra of dermaseptin in hydrophobic media indicated 80% alpha-helical conformation, and predictions of secondary structure suggested that dermaseptin can be configured as an amphiphatic alpha-helix spanning over residues 1-27, a structure that perturbs membrane functions regulating water flux.

Amino Acid Sequence

In vivo effects of immunostimulating lipopeptides on mouse liver microsomal cytochromes P-450 and on paracetamol-induced toxicity.

Immunomodulating lipopeptides lauroyl-L-Ala-gamma-D-Glu-LL-A2pmNH2-Gly (RP 44.102) and lauroyl-L-Ala-gamma-D-Glu-LL-A2pmNH2 (RP 56.142) were found to protect mice against the hepatotoxicity of paracetamol, which is due to cytochrome P-450 dependent formation of toxic metabolites and radicals. In fact they decreased the amount of hepatic microsomal cytochrome P-450, and the level of CCl4-induced lipid peroxidation. In contrast lauroyl-L-Ala-gamma-D-Glu-DD-A2pmNH2 (RP 53.204), which only differs by the configuration of the two chiral carbons of A2pm (diaminopimelic acid) and is not an immunomodulating agent, failed to protect against poisoning by paracetamol and had no effect on the level of hepatic cytochrome P-450 or the microsomal CCl4-induced lipid peroxidation. This provides a clear connection between the immunostimulating properties of a compound and its effects on xenobiotic biotransformations.

Acetaminophen

Biologically active casein peptides implicated in immunomodulation.

Maternal milk should not only be considered as a nutrient, but also as a protecting agent against aggressions from the neonate's new environment. Breast-feeding facilitates transmission of a passive immunity by multifunctional factors which have a direct effect on the neonate's resistance to bacterial and viral infections. Among these factors are the main milk proteins, the caseins: during enzymic digestion of human and bovine caseins, immunomodulating peptides are released. Corresponding synthetic peptides stimulated in vitro phagocytic activity of murine and of human macrophages and exerted in vivo a protective effect against Klebsiella pneumoniae infection of mice. These data suggest that casein peptides may exert a stimulating function on the immune system of the newborn.

Animals

Casein, a prohormone with an immunomodulating role for the newborn?

Maternal colostrum and milk, the earliest food of the newborn, should not only be considered as supplying nutrients, but also as agents providing protection against aggressions from the new environment. Indeed by enzymatic digestion of the main milk proteins, the caseins, biologically active peptides are released; they may be implicated in the stimulation of the newborn's immune system. From this point of view a 'strategic active zone' has been characterized in beta-casein. A possible role of casein as a 'prohormone' for the newborn is suggested.

Caseins

A new enzymatic pathway of citrullinogenesis in murine hemopoietic cells.

Citrullinogenesis is demonstrated when murine bone marrow cells are incubated with dialyzed secondary mixed leukocyte culture supernatant. The identity of citrulline in bone marrow cell supernatants has been established by gas chromatographic mass spectrometric analysis. It is shown that, in our model, citrulline synthesis proceeds directly from arginine without intermediate ornithine production, ruling out the involvement of ornithine transcarbamylase (EC 2.1.3.3.). Moreover, none of the other enzymatic activities described for catalyzing citrullinogenesis, i.e. arginine deiminase or peptidyl arginine deiminase can be demonstrated. The generation of oxygen radicals is necessary for this enzymatic reaction. It is induced by a thermolabile protein produced during the antiallograft immune response with a molecular weight of about 150,000.

Animals

[Immunostimulating and adjuvant activities of a low molecular weight lipopeptide].

From crude extracts of a Streptomyces strain exhibiting immunopotentiating effects, a tetrapeptide was isolated and its structure established as L Ala leads to D isoGlu leads to L, L Dap comes from Gly. This peptide was devoid of biological activity but its chemical coupling with lauric acid gave a substance endowed with adjuvant and immunostimulating properties. This substance and the corresponding synthetic lauroyltetrapeptide were as active in this respect as the muramyl-dipeptide, thus far considered as the minimal adjuvant-active structure of bacterial cell walls: the presence of a sugar moiety is therefore not a prerequisite for immunopotentiating activities.

Adjuvants, Immunologic

Adjuvant and immunostimulating activities (in the absence of freund's incomplete adjuvant) of chemically modified low molecular weight mycobacterial peptidoglycans.

Relatively low molecular weight peptidoglycan fragments extracted from two strains of Mycobacterium tuberculosis var. hominis were chemically coupled with lauric acid. The fatty acid conjugates were compared with the native substances with respect to some immunopotentiating activities. In vitro, the mitogenic effect on murine spleen lymphocytes was significantly enhanced following conjugation. One of the lauric acid conjugates stimulated, upon intravenous administration in mice, the formation of antibody-producing cells in the spleen, while the native substance was devoid of such activity. In adjuvanticity tests performed in the guinea pig in the absence of mineral oil, the fatty acid conjugates generally exerted a higher adjuvant effect on antibody production or on delayed type hypersensitivity reactions than did the native preparations.

Adjuvants, Immunologic

Adjuvant activities of chemically modified water-soluble substances from Mycobacterium tuberculosis.

Water-soluble peptidoglycan fragments extracted from the cells of two strains of Mycobacterium tuberculosis var. hominis were chemically conjugated with lauric or with palmitic acid. The coupling reaction was confirmed by physicochemical procedures. The native and the fatty acid-conjugated substances were studied for their adjuvant activity in the induction of delayed type hypersensitivity (DTH) reactions in guinea-pigs and on the production of circulating antibodies in the rabbit. Palmitic acid conjugation of one of the substances increased its adjuvanticity on DTH in the presence of mineral oil; lauric or palmitic acid conjugation rendered the substances adjuvant-active on DTH in the absence of mineral oil. Lauric acid, but not palmitic acid conjugation conferred on both substances an adjuvant activity on antibody production in the absence of mineral oil. Furthermore, lauric acid conjugation of one of the substances led to the appearance of an in vitro mitogen-like activity for murine spleen lymphocytes. In conclusion, fatty acid conjugation exerted a significant modifying effect on the immuno-potentiating activities of these peptidoglycan fragments, and such a chemical procedure may lead to the development of substances exerting a full adjuvant activity without the need of injecting them in an oily vehicle.

Adjuvants, Immunologic

Induction of allergic encephalomyelitis using hydrosoluble mycobacterial fractions.

Experimental allergic encephalomyelitis has been induced in guinea pigs employing bovine myelin basic protein as the antigen and a hydrosoluble tetrasaccharide-heptapeptide from delipidated cells of the human mycobacterial strain H37Ra as adjuvant. The maximum response was observed using 33 mug of antigen and 12.5 mug of adjuvant per animal.

Adjuvants, Immunologic

Induction of allergic encephalomyelitis using hydrosoluble adjuvant and the tryptophan region of myelin basic protein.

Experimental allergic encephalomyelitis has been induced in guinea pigs using the encephalitogenic tryptophan peptide as antigen and a hydrosoluble adjuvant extracted from Mycobacterium tuberculosis, var. hominis, strain H37Ra. The maximum response was observed using 100mug of adjuvant per animal. This is a quantity of adjuvant substantially higher than was necessary to induce disease utilizing the whole myelin basic protein as antigen.

Adjuvants, Immunologic

Low molecular weight water-soluble peptidoglycans as adjuvants and immunostimulants.

The tetrasaccharide-heptapeptide (TH), when injected with mineral oil, exerted a strong adjuvant effect. It stimulated B and T cells, but did not increase the phagocytic activity of the reticulo-endothelial system. While BCG exerted significant preventive effect on the growth of sarcoma 180, leucosarcomatosis an EHRLICH ascitic tumor, TH, at the doses used, was devoid of such activity.

Adjuvants, Immunologic

Adjuvant and immunostimulating activities of water-soluble substances extracted from Mycobacterium tuberculosis (var. hominis).

Water-soluble substances have been extracted from two strains of Mycobacterium tuberculosis var. hominis: the native hydrosoluble part (polysaccharide and peptidoglycan), a substance in which the polysaccharide moiety is less abundant than in the latter, the acetylated peptidoglycan and, finally a tetrasaccharide-heptapeptide. All four types of substances, when they were injected together with Freund's incomplete adjuvant, exerted an adjuvant effect on the production of delayed-type hypersensitivity to ovalbumin in the guinea pig and on the production of anti-influenza virus antibodies in the rabbit. Injected intravenously in the mouse, they increased the number of antibody-producing cells in the spleen and enhanced the graft versus host reaction; no effect was seen on the phagocytic activity of the reticulo-endothelial system. By contrast with wax D, the water-soluble substances were devoid of arthritis-inducing activity in the rat. Altogether, these water-soluble substances seem to be endowed with at least some of the adjuvant activities of Freund's complete adjuvant and some of the immunostimulant activities of a live Mycobacterium like BCG.

Adjuvants, Immunologic