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Biomedical subjects

R Snyderman

Publications and source records attributed to R Snyderman.

At least 163 records · Page 9Linked to original sources

N-Formylmethionyl peptide receptors on equine leukocytes initiate secretion but not chemotaxis.

The chemotaxis of leukocytes appears to be initiated by the binding of chemotactic factors to the surface of these cells. N-Formylated peptides induce chemotaxis and lysosomal enzyme secretion of leukocytes; because these peptides are available in a purified radiolabeled form, they have been useful in the characterization of receptors for chemotactic factors. Equine polymorphonuclear leukocytes secrete lysosomal enzymes but do not exhibit chemotaxis in respone to the N-formylated peptides, even though they have a high-affinity cell surface receptor for these agents. The specificity of the equine receptor resembles the specificity of the receptor on chemotactically responsive leukocytes from other species. Equine polymorphonuclear leukocytes may thus be an excellent model for the study of the events that lead to a biological response following receptor occupancy.

Animals↗

Development of specific receptors for N-formylated chemotactic peptides in a human monocyte cell line stimulated with lymphokines.

A human monocyte-like cell line, U937, when grown in continuous culture, does not secrete lysosomal enzymes or migrate towards chemotactic factors. When the cells are stimulated by lymphokines, however, they develop the ability both to migrate directionally and to secrete enzymes in response to several types of chemoattractants. The development, by stimulated cells, of chemotactic and secretory responses to one class of chemoattractants, the N- formylated peptides, is accompanied by the appearance on the cells of specific binding sites for these substances. Using tritiated N-formyl- methionyl-leueyl-phenylalanine (fMet-Leu-[(3)H]Phe) as a ligand, it was determined that unstimulated U937 cells possess no detectable binding sites. However, after stimulation with lymphocyte culture supernates for 24, 48, and 72 h, they developed 4,505 (+/-) 1,138, 22,150(+/-) 4,030, and 37,200 (+/-) 8,000 sites/cell, respectively. The dissociation constants for the interaction of fMet-Leu-[SH]Phe with the binding sites were approximately the same regardless of stimulation time and ranged between 15 and 30 nM. The binding of fMet-Leu-[(3)H]Phe by stimulated U937 cells was rapid and readily reversed by the addition of a large excess of unlabeled peptide. The affinity of a series of N-formylated peptides for binding to U937 cells exactly reflected the potency of the peptides in inducing lysosomal enzyme secretion and chemotaxis. The availability of a continuous human monocytic cell line that can be induced to express receptors for N-formylated peptides will provide a useful tool not only for the characterization of such receptors but also for the delineation of regulatory mechanisms involved in cellular differentiation and the chemotactic response.

Binding Sites↗

An inherited abnormality of neutrophil adhesion. Its genetic transmission and its association with a missing protein.

Neutrophils from a five-year-old boy with recurrent bacterial infections failed to spread on surfaces, leading to a severe defect in chemotaxis and a mild impairment in phagocytosis. Failure to spread was also seen in a fraction of the neutrophils from the patient's mother and sister, but cells from his father and brother were normal. Gel electrophoresis revealed that a protein with a molecular weight of 110,000 daltons (designated gp 110) present in the particulate fraction of normal neutrophils was absent from the patient's cells, and that its levels were below normal in cells from his mother and sister but normal in neutrophils from his father and brother. These findings suggest that gp 110 is necessary for the spreading of neutrophils onto surfaces, that the functional abnormality in the patient's cells is caused by its absence, and that deficiency of gp 110 is an X-linked congenital disease.

Blood Proteins↗

Influence of cytoskeletal assembly on phosphatidylcholine synthesis in intact phagocytic cells.

Interactions of the plasma membrane with the cytoskeleton are required for diverse cellular functions such as adhesion, division, secretion, endocytosis and chemotaxis. We therefore investigated whether the reversible assembly of microtubules and/or microfilaments in leukocytes affected the synthesis of a key membrane component, phosphatidylcholine. The effects of a variety of antitubuin and antimicrofilament agents on phosphatidylcholine synthesis via the methylation of phosphatidyl-ethanolamine and its formation through CDP-choline were studied. The antitubulins inhibited the incorporation of 3H-methyl groups into phosphatidylethanolamine in guinea pig macrophages and polymorphonuclear leukocytes by as much as 64%, while cytochalasin B, an antimicrofilament agent, had no effect. In contrast, the incorporation of methyl-3H-choline into phosphatidylcholine was stimulated in these cells by as much as 2 fold by the anti-tubulins. The synthesis of phosphatidylcholine in a nonphagocytic cell type, splenic lymphocytes, was not altered in the presence of the antitubulin agents. Changes in the state of polymerization of cellular tubulin pools associated with certain specialized functions of cells may, through effects on phosphatidylcholine synthesis, alter local membrane composition, microviscosity, or the interaction of membrane proteins with their environment.

Animals↗

Depression of murine macrophage accumulation by low-molecular-weight derived from spontaneous mammary carcinomas.

Extracts prepared from spontaneous mouse mammary adenocarcinomas, as well as plasma and urine from inbred C3H/HeN mice carrying murine mammary tumor virus and bearing such tumors, significantly inhibited the accumulation of macrophages at inflammatory sites in inbred the accumulation of macrophages at inflammatory sites in inbred C3Heb/FeJ mice. Much of the inhibitory activity from tumor cells was associated with products having a molecular weight (¿ 30,000); the inhibitory factor isolated from the plasma and urine of tumor-bearing animals had a molecular weight of 30,000 or less. Liver and spleen tissue, plasma, and urine from non-tumor-bearing animals had a molecular weight of 30,000 or less. Liver and spleen tissue, plasma, and urine from non-tumor-bearing animals had no effect on macrophage accumulation. Tumor cell extracts, plasma, and urine from tumor-bearing mice were shown to be free of infectious lactate dehydrogenase virus, a frequent contaminant of transplanted tumor and a known modifier of macrophage function. These results agreed with earlier reports of inhibitory activity for macrophage accumulation found in the tumors and sera of mice bearing multiple-passaged transplanted tumors and suggested that spontaneously arising neoplasms may subvert immune surveillance by depressing the ability of macrophages to respond to inflammatory stimuli.

Adenocarcinoma↗

Macrophage accumulation in mice is inhibited by low molecular weight products from murine leukemia viruses.

Low m.w. extracts from three known oncogenic viruses, Friend, Moloney, and Rauscher, inhibited the accumulation of macrophages at sites of delayed inflammatory reactions in mice. The potential biologic significance of these proteins is suggested by their potency: as little as 1.2 ng of viral protein inhibited (p less than 0.02) macrophage accumulation when injected at a site distant to the inflammatory reaction. A virus envelope protein fraction of 15,000 daltons (p15E) was likewise found to inhibit macrophage accumulation and may in part represent the active factor of the virus extracts. Certain oncogenic viruses may thus exert their immunosuppressive activity by release of potent inhibitors of systemic macrophage function.

AKR murine leukemia virus↗

Absence of macrophage involvement in the passive serum therapy of Friend leukemia virus-induced disease.

The possible involvement of host macrophages in the passive serum therapy of Friend leukemia virus (FLV)-induced disease has been examined with the use of agents inhibiting normal macrophage functions, including silica and a tumor-produced macrophage chemotaxis inhibitor. Under conditions in which macrophage chemotaxis inhibitor. Under conditions in which macrophage functions are at least transiently abrogated by these agents, no effect was seen on the anti-fLV protection afforded by the passive administration of chimpanzee anti-FLV antiserum to infected DBA/2 mice, as monitored by the development of virus-induced splenomegaly and the level of infectious virus. The macrophage inhibitors also did not influence the appearance of the host antiviral humoral immune response which normally accompanies serum protection. These results suggest that the normal functioning of host macrophages do not play a central role in the passive serum therapy protective mechanism leading to resistance to FLV infection.

Animals↗

Demonstration of a chemotactic factor receptor on macrophages.

Certain synthetic N-formylated peptides are potent chemotactic agents for phagocytic cells. We have identified a specific, high affinity receptor for the chemotactic peptide fMet-Leu-[3H]Phe on inflammatory as well as on resident guinea pig peritoneal macrophages. The receptor on inflammatory macrophages has an equilibrium dissociation constant (KD) of 11 nM at room temperature, and there are approximately 10,000 binding sites per cell. The receptor on resident peritoneal macrophages has a KD of 7 nM with approximately 12,000 sites per cell. The increased chemotactic responsiveness of inflammatory macrophages as compared to resident macrophages is probably not due to differences in the fMet-Leu-[3h]phe receptor since the number of binding sites per cell and the KD are quite similar. The specificity of the binding site on both cell types for a series of N-formylated peptides correlates well with the ability of the peptides to initiate macrophage chemotaxis. These studies suggest that the chemotactic response of guinea pig peritoneal macrophages to N-formylated peptides is initiated by the binding of the peptides to a specific cell-surface receptor.

Animals↗

Deficiency of the fifth component of complement in human subjects. Clinical, genetic and immunologic studies in a large kindred.

The discovery of a large kindred with a heritable deficiency of the fifth component of complement (C5) has permitted the accumulation of new clinical, genetic and immunologic data concerning the role of C5 in human subjects. The proband, who has had nine episodes of disseminated gonococcal infection, has a hemolytic C5 level of approximately 0.5 per cent of normal. No C5 protein was detectable, but low levels of functional C5 activity could be found using a sensitive bactericidal assay. The proband's twin as well as another sister also had extremely low levels of hemolytic C5(approximately 0.5 per cent normal), but both these subjects have been healthy. Hemolytic complement and bacteriolytic activity could be restored by the addition of purified C5. No chemotactic activity for polymorphonuclear leukocytes could be generated in the C5-deficient serums upon activation of either the classic or alternative pathways, again demonstrating the importance of C5 in human subjects for the production of chemotactic factors. The chemotactic responsiveness of the patients' polymorphonuclear leukocytes and monocytes to preformed chemotactic factors was not depressed. Twenty-two of 32 other family members from three generations had depressed whole hemolytic complement levels. In 19 of 30 family members, levels of hemolytic C5 ranged from 13 to 64 per cent of normal. No linkage for C5 deficiency and the A or B loci of the major histocompatibility complex could be found. These data suggest an autosomal codominant mode of inheritance of C5 deficiency. Deficiency of C5 is compatible with good health, but it can be associated with repeated disseminated gonococcal infection.

Adult↗

Chronic mucocutaneous candidiasis. Immunologic studies of three generations of a single family.

A family consisting of eight members in three generations (age 10 months to 53 years) affected with chronic mucocutaneous candidiasis was studied along with three unaffected relatives. Dermatophytosis, loss of teeth and recurrent viral infections were present in some members. Results of tests for endocrinologic, muscle or liver disease, thymoma, iron deficiency, antitissue antibodies and malabsorption were normal in all patients. Antibody function and levels, B cell counts, serum complement, leukocyte enzymes, chemotaxis, phagocytosis and adherence were normal in all members. Plasma inhibitors to lymphocyte transformation and leukocyte inhibitory factor were not found. No unique HLA haplotype or antigen segregated in this family. Evaluation of cell-mediated immunity revealed total cutaneous anergy in three of eight whereas four of the other five had negative lymphocyte transformation and skin tests to Candida but responded normally to other antigens. Leukocyte inhibitory factor was not produced to Candida antigen in all four patients tested. T cell counts were within normal limits in all. Extensive evaluation of all limbs of the immune system in this family revealed a defect in cell-mediated immunity to Candida that appeared to be inherited as a dominant characteristic.

Adolescent↗

Antibodies raised against purified beta-adrenergic receptors specifically bind beta-adrenergic ligands.

Antibodies raised against purified beta-adrenergic receptors themselves specifically bind beta-adrenergic ligands. Digitonin-solubilized frog (Rana pipiens) erythrocyte beta-adrenergic receptors, purified 100- to 200-fold by adsorption to an alprenolol-agarose affinity support and specifically eluted from the affinity resin by 1-100 mM (+/-)-isoproterenol, were used to immunize six rabbits. All immune sera, in contrast to preimmune sera, bound the beta-adrenergic antagonist [(3)H]Dihydroalprenolol binding activity was due to immunoglobulins. By competition studies, antibody [(3)H]dihydroalprenolol binding was found to display a specificity and stereoselectivity resembling that of the beta-adrenergic receptor, [i.e., (-)-isoproterenol > (-)-epinephrine > (-)-norepinephrine; alprenolol approximately propranolol >> phentolamine = aloperidol; and (-) isomers of both agonists and antagonists 10-100 times more potent than (+) isomers]. A portion of the [(3)H]dihydroalprenolol binding antibodies could be specifically adsorbed onto purified frog erythrocyte membranes, whereas Xenopus and human erythrocyte membranes, both of which are almost devoid of beta-adrenergic receptors, were ineffective in adsorbing [(3)H]dihydroalprenolol binding antibodies. We suggest that the likely immunogen was a beta-adrenergic receptor-isoproterenol complex and that immunization with drugs noncovalently bound to their receptors might be a means of raising antibodies to biologically active otherwise nonimmunogenic small molecules. Such antibodies, whose specificity mimics that of a receptor, should also provide useful models for the study of the structure of the receptor binding sites.

Adrenergic beta-Agonists↗

Phospholipid methylation in macrophages is inhibited by chemotactic factors.

Chemotaxis by human monocytes has been shown to require methylation mediated by S-adenosyl-L-methionine(AdoMet), but the specific transmethylation reaction necessary for this function was not elucidated. In an attempt to define the methylation requirement for chemotaxis, we examined the effect of chemotactic agonists and antagonists on protein carboxy-O-methylation of protein and methylation of phospholipid in guinea pig macrophages. Chemotactic agents tested over a wide dose and time range produced no alteration in carboxy-O-methylation. However, these agents did produce an effect on the methylation of phosphatidylethanolamine by macrophages. AdoMet-mediated phospholipid methylation was inhibited by as much as 73% by chemotactic factors, and there was excellent correlation (r = 0.99) between their concentrations for producing half-maximal chemotactic responses and for inhibiting phospholipid methylation. The inhibition of methylation by chemotactic factors was observed at all incubation times and could not be explained by an increased turnover of membrane phospholipid. Neither the chemotaxis antagonist fPhe-Met nor the nonchemotactic tripeptide Met-Met-Met significantly depressed phospholipid methylation. Immune phagocytosis by macrophages similarly did not alter phospholipid methylation. The chemotactic factors produced no alteration in total macrophage phospholipid synthesis or in the phospholipid methylation in a nonchemotactic cell type. The formation of newly methylated derivatives of phosphatidylethanolamine in macrophages was decreased by a biologically active dose of chemotactic factor. These findings indicate that chemotactic factors are capable of altering the methylation of phosphatidylethanolamine in chemotactically responsive cells. The inhibition of phospholipid methylation by chemotactic factors may be necessary for the translation of a chemotactic signal on the surface of the cell into directional cell movement.

Animals↗

Neisseria meningitidis bacteremia in association with deficiency of the sixth component of complement.

The serum of a 26-year-old black man with a recent episode of meningococcemia complicated by meningitis and arthritis was found to lack hemolytic complement activity. The sixth component of complement was not detected by functional or immunochemical assays whereas other components were normal by hemolytic assay. His fresh acute-phase serum lacked complement-mediated bactericidal activity against the homologous strain of Neisseria meningitidis, but the addition of fresh normal serum or purified C6 restored bactericidal activity as well as hemolytic activity. The absence of C6 activity could not be accounted for on the basis of an inhibitor. Opsonization and chemotaxis functioned normally. Histocompatibility typing of family members did not demonstrate evidence for genetic linkage of C6 deficiency with the major histocompatibility loci. This report represents the first published case of C6 deficiency associated with bacteremic Neisseria infections in which antimeningococcal bactericidal antibodies have been definitively demonstrated against the homologous strain in the acute phase of the illness.

Adult↗

Generation of a fibroblast chemotactic factor in serum by activation of complement.

When serum complement is activated by either the classical or alternative pathways, a factor with an apparent 80,000 mol wt is generated that is chemotactic for human dermal fibroblasts. The origin of this serum-derived chemotactic factor (SDCF) is not known; however, it may be a cleavage product from C5 because it is inactivated by monospecific antiserum to human C5, and it is not generated when the complement system is activated in human serum deficient in C5. SDCF is not chemotactic for human neutrophils or monocytes. Because SDCF is generated when serum complement is activated, it may function in vivo to attract connective tissue fibroblasts to sites of inflammatory reactions in which the complement system participates.

Cells, Cultured↗