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Biomedical subjects

G J Gleich

Publications and source records attributed to G J Gleich.

At least 163 records · Page 9Linked to original sources

Localization of pregnancy-associated plasma protein-A and colocalization of pregnancy-associated plasma protein-A messenger ribonucleic acid and eosinophil granule major basic protein messenger ribonucleic acid in placenta.

BACKGROUND: The human eosinophil granule major basic protein (MBP), a 13.8 kilodalton cationic polypeptide constituting the core of the eosinophil granule, is cytotoxic to parasites and numerous mammalian cells. Concentrations of a molecule immunochemically similar to eosinophil granule MBP are present in maternal plasma, and MBP mRNA has been localized to placental X cells by in situ hybridization. Eosinophil granule MBP is initially translated as a nontoxic precursor (proMBP), containing a 9.9 kilodalton acidic pro-portion that is believed to neutralize MBP toxicity. Recent analyses of sera from pregnant women have revealed that pregnancy-associated plasma protein-A (PAPP-A), previously thought to be a homotetramer of PAPP-A subunits, is actually composed of PAPP-A subunits bound by disulfide bonds to equimolar amounts of proMBP molecules to form a complex, PAPP-A/proMBP. In addition, the PAPP-A subunit nucleotide and deduced amino acid sequence have been determined from cloned cDNA. The PAPP-A monomer found in plasma contains 1547 amino acid residues. EXPERIMENTAL DESIGN: Because of the new evidence that PAPP-A is complexed with proMBP, previous studies on the localization of PAPP-A using antibodies to PAPP-A must be questioned. To determine the localization of the PAPP-A subunit, immunofluorescence was performed on normal placental tissues using proMBP absorbed anti-PAPP-A antibody. Furthermore, the expression of PAPP-A mRNA was investigated by in situ hybridization. RESULTS: Immunofluorescence staining with proMBP absorbed anti-PAPP-A antibody showed that PAPP-A is localized to placental septa, anchoring villi, and the syncytia of chorionic villi, whereas MBP is localized only to septa and anchoring villi. By in situ hybridization, PAPP-A mRNA is detected in placental X cells and syncytiotrophoblasts, but MBP mRNA is localized only to placental X cells. CONCLUSIONS: The presence of PAPP-A mRNA and PAPP-A subunit protein in placental X cells and syncytiotrophoblasts indicates that both X cells and syncytiotrophoblasts synthesize the PAPP-A subunit, whereas only X cells synthesize proMBP.

Blood Proteins↗

Expression of eosinophil-granule major basic protein messenger ribonucleic acid in placental X cells.

BACKGROUND: The human eosinophil-granule major basic protein (MBP) is a 13.8-kilodalton cationic polypeptide constituting the core of the eosinophil granule. MBP is cytotoxic to parasites and numerous mammalian cells and is a potent secretagogue for platelets, basophils, mast cells, and neutrophils. Concentrations of a molecule immunochemically similar to eosinophil granule MBP are present in maternal plasma, and MBP has been localized by immunofluorescence to placental X cells. EXPERIMENTAL DESIGN: To determine whether X cells produce MBP, the expression of MBP messenger RNA (mRNA) was investigated in placentas by Northern blot analyses and by in situ hybridization with 35S-labeled RNA probes. RESULTS: Northern blot analyses of RNA from placental septa and villi showed the existence of a 1.0-kb RNA band that hybridized with the MBP anti-sense probe; no MBP mRNA was detected in whole blood of normal or pregnant women or in cord blood. Analyses of placentas by in situ hybridization showed MBP mRNA in X cells of placental septa and anchoring villi, but not in other cellular elements such as syncytiotrophoblasts, cytotrophoblasts, villous stromal cells, and fetal endothelial cells. RNase pretreatment abolished X-cell hybridization signals; treatment of sections with an excess of nonradiolabeled anti-sense RNA also blocked binding of the 35S-labeled anti-sense RNA probe. Additional evidence supporting the production of MBP by X cells was obtained using a combination of in situ hybridization and immunofluorescence, which showed colocalization of MBP and its mRNA. CONCLUSIONS: The presence of MBP mRNA and MBP protein in placental X cells indicates that X cells synthesize this biologically active molecule.

Blood Proteins↗

Eosinophil granule major basic protein inhibition of corneal epithelial wound healing.

PURPOSE: Human eosinophil major basic protein (MBP) was studied in an established organ culture model for rat corneal epithelial wound healing to elucidate further the role of the protein in vernal keratopathy. METHODS: Epithelial migration rates were tested for five MBP concentrations (10, 25, 50, 100, and 200 micrograms/ml MBP). RESULTS: Significantly less epithelial migration than control (P < 0.05) was observed in all tested groups. Histologic examination revealed abnormally heaped-up leading epithelial edges in all test groups compared to the normal tapered edges in all controls. Immunofluorescence disclosed MBP deposition on deepithelialized cornea. CONCLUSIONS: These results suggest that MBP may contribute to vernal corneal ulcerations by inhibiting corneal epithelial migration.

Animals↗

Circulating human pregnancy-associated plasma protein-A is disulfide-bridged to the proform of eosinophil major basic protein.

A previously unrecognized association between pregnancy-associated plasma protein-A (PAPP-A) and the proform of eosinophil major basic protein (proMBP) is demonstrated. PAPP-A isolated from pooled pregnancy serum is shown to be a disulfide-bridged complex with proMBP (PAPP-A/proMBP) in which the subunits of the constituents are present in a 1:1 molar ratio. The results are the outcome of analysis of tryptic and CNBr/tryptic peptides from PAPP-A/proMBP, sequence analysis of intact and reduced and carboxymethylated PAPP-A/proMBP, and reaction with monoclonal antibodies directed against MBP and its proform. In addition, it is shown that commercial polyclonal anti-PAPP-A is polyspecific, also reacting with MBP.

Amino Acid Sequence↗

Eosinophil granule major basic protein deposition in corneal ulcers associated with vernal keratoconjunctivitis.

An indirect immunofluorescence assay detected eosinophil granule major basic protein in the inflammatory debris covering deepithelialized cornea in two patients with vernal keratoconjunctivitis. A slight degree of non-specific fluorescence was present in the control autopsy corneas. High concentrations of the eosinophil granule major basic protein inhibit epithelial migration and protein synthesis, whereas low concentrations affect epithelial migration. The results suggest participation of eosinophil granule major basic protein in the ulcerative process.

Blood Proteins↗

Inhibition of the activation of hageman factor (factor XII) by eosinophils and eosinophilic constituents.

Several syndromes characterized by striking eosinophilia may be complicated by thrombosis. The experiments described indicate that, paradoxically, eosinophils and certain of their constituents inhibit the activation of Hageman factor (HF, factor XII). In earlier studies, suspensions of mixed types of granulocytes, other nucleated peripheral blood cells, and platelets inhibited activation of Hageman factor by ellagic acid, glass, and sulfatides. After these cells were sedimented by centrifugation, the supernatant fluids were also inhibitory. No attempt had been made earlier to distinguish among different granulocytic species. In the present study, suspensions of eosinophils and the supernatant fluid after eosinophils had been separated by centrifugation inhibited activation of Hageman factor by ellagic acid. The protein concentration of that amount of supernatant fluid that inhibited activation by about half was 16 micrograms/ml, approximately the same as had been described for suspensions of peripheral blood mononuclear cells. Activation of Hageman factor by ellagic acid was also inhibited by certain constituents of eosinophils, including eosinophil peroxidase, eosinophil major basic protein and eosinophil cationic protein. Inhibition was not specific for ellagic acid-induced activation of Hageman factor, as inhibition was also observed with sulfatide-induced activation. Inhibition was presumably related to neutralization of the negative charge of activators of Hageman factor. Thus, bismuth subgallate, a particulate activator of Hageman factor, was no longer effective after it had been exposed to eosinophil cationic protein. The observations reported here raise the question of whether in vivo eosinophils modulate certain of the defense reactions ascribed to Hageman factor.

Blood Proteins↗

Bronchial hyperreactivity and eosinophil granule proteins.

Five lines of evidence support the hypothesis that the eosinophil, possibly through its granule proteins, mediates bronchial hyperreactivity. First, bronchial hyperreactivity and blood eosinophilia are associated in patients with asthma. Second, bronchial hyperreactivity is associated with the number of eosinophils and the levels of eosinophil granule MBP in BAL fluids. Third, direct instillation of MBP into the lungs of monkeys caused bronchospasm and increased reactivity to methacholine. Fourth, direct application of MBP to respiratory epithelium caused increased smooth muscle reactivity to acetylcholine, suggesting that MBP stimulates respiratory epithelium to produce factors active on smooth muscle. Fifth, MBP causes allosteric inhibition of lung M2 muscarinic receptors.

Animals↗

Human eosinophil major basic protein augments bronchoconstriction induced by intravenous agonists in guinea pigs.

The direct effect of intratracheal (IT) administration of human major basic protein (MBP) on pulmonary inspiratory pressure (PIP), and the effect on agonist-induced change in PIP, were determined in anesthetized, ventilated guinea pigs. 500 micrograms MBP increased PIP from 24.1 +/- 4.3 to 49.8 +/- 7.4 cmH2O (p < 0.002, n = 10). Maximum PIP was achieved within 30 min after 500 micrograms MBP. The direct PIP response to 250 micrograms MBP was not different from vehicle. The PIP responses to intravenous (IV) acetylcholine (Ach) and 5-hydroxytryptamine (5-HT) were measured before and after administration of 250 micrograms MBP (n = 12). MBP caused a modest, but significant potentiation of the increase in PIP induced by 1, 3 and 10 micrograms/kg Ach (24, 32 and 28%, respectively, p < 0.02) and to 1 microgram/kg 5-HT (43% p < 0.02). We conclude that MBP at a dose that does not directly affect inspiratory pressure is capable of augmenting the PIP response to IV Ach and 5-HT in vivo.

Acetylcholine↗

Eosinophil survival activity identified as interleukin-5 is associated with eosinophil recruitment and degranulation and lung injury twenty-four hours after segmental antigen lung challenge.

BACKGROUND: Segmental antigen challenge in allergic volunteer subjects leads to the recruitment of inflammatory cells, including eosinophils, to the lung and to lung injury as shown by albumin influx into the alveolar air space. The goal of this study was to determine whether eosinophil-active cytokines, including IL-3, IL-5, or granulocyte-macrophage colony-stimulating factor, are released into the lung 24 hours after segmental antigen challenge of ragweed allergic subjects with allergic rhinitis and to determine whether the presence of the cytokine or cytokines is correlated with markers of lung inflammation and lung injury. METHODS: Volunteers underwent challenge with a wide variety of antigen doses, which resulted in the recruitment of inflammatory cell mixtures both with and without eosinophils. RESULTS: Eosinophil survival activity (ESA), the ability of the cytokine to prolong blood eosinophil survival in culture, was found in 5 of 17 ragweed allergic subjects and only in subjects challenged with relatively high doses of ragweed antigen (0.2 ragweed antigen units/ml or more). No ESA was found in bronchoalveolar lavage (BAL) fluid in any of eight nonragweed allergic subjects. This activity could be almost completely neutralized by preincubating BAL fluid with specific antibody to IL-5, although a small contribution by granulocyte-macrophage colony-stimulating factor may also have been present. ESA correlated with eosinophil recruitment (r = 0.72, p < 0.001) and degranulation in the lung (r = 0.63 to 0.81, p < 0.01, for eosinophil granule constituents in BAL fluid) and lung injury as shown by albumin influx into the alveolar air spaces (r = 0.83, p < 0.001). ESA was unrelated to the presence of other inflammatory cells in the lung. Subjects who had IL-5 in BAL fluid appeared to undergo more severe initial reactions to antigen challenge. CONCLUSIONS: We conclude that IL-5 is the most important constituent in ESA in the lung 24 hours after antigen challenge and that it correlates with eosinophil recruitment, degranulation, and lung injury.

Allergens↗

Nodules, eosinophilia, rheumatism, dermatitis and swelling (NERDS): a novel eosinophilic disorder.

This study presents the clinical and laboratory findings of a novel syndrome associated with eosinophilia. Two young women presented with marked eosinophilia, and large, non-tender compressible articular nodules arising from the tenosynovium of extensor tendons, dermatitis, episodic swelling of the hands and/or feet and pain in adjacent muscles and joints. Tissue specimens were examined by routine haematoxylin and eosin staining, immunofluorescent staining for eosinophil granule major basic protein (MBP) and rhodamine-avidin or tryptase staining for mast cells. Plasma levels of MBP and eosinophil-derived neurotoxin (EDN) were quantitated by immunoassay. The first patient presented in 1967 at the age of 20 and had, in addition to nodules and eosinophilia, dermographism, recurrent episcleritis and axillary urticaria. Biopsy of a nodule showed tenosynovitis with necrotizing granulomas, non-specific vasculitis, eosinophils and eosinophil degranulation as shown by extracellular deposition of eosinophil granule MBP. Her symptoms responded to low-dose, alternate-day prednisone and have remained quiescent over the past 15 yr. The second patient presented in 1990 at the age of 28 with generalized pruritic dermatitis for 15 yr, eosinophilia for 2 yr, subcutaneous nodules and non-limiting pain in several joints. Biopsy of a nodule showed chronic mild tenosynovitis, numerous eosinophils and extracellular deposition of MBP. She remains untreated. Serum IgE values and plasma levels of MBP and EDN were elevated in both patients; mast cells were numerous in their synovial tissue. Based on their clinical courses, these patients reveal the existence of a distinctive, relatively benign eosinophilic disorder with good long-term prognosis.

Adult↗

The biology of the eosinophilic leukocyte.

The eosinophil is characterized by specific cytoplasmic granules that contain a series of cationic toxins able to kill many targets, including helminths, protozoa, bacteria, and other cells. In bronchial asthma, considerable evidence exists that the eosinophil releases granule proteins, especially the major basic protein (MBP), which in turn mediate tissue abnormalities. Among eosinophil-activating factors, IL-5 has been associated with helminth infection and hypersensitivity diseases and would appear to be an attractive target for pharmacological intervention.

Biology↗

Immunoglobulin E-mediated increase in vascular permeability correlates with eosinophilic inflammation.

An increase in bronchovascular permeability is thought to play an important role in the pathogenesis of allergic asthma. We sought to determine whether the increase in permeability observed 24 h after segmental antigen challenge in ragweed-allergic human volunteers was associated with the infiltration and degranulation of a specific cell type. A 20,000-fold range of antigen concentrations was used to alter the number and type of inflammatory cells recruited to the lung by challenge. Although large numbers of inflammatory cells were recruited to lung air spaces over a large range of antigen concentrations, significant numbers of eosinophils (731.3 +/- 232.9 x 10(3)/ml) were recruited only when the concentration of antigen used for segmental challenge was > or = 100-fold higher than the concentration needed to produce an 8 to 10 mm wheal 20 min after intradermal skin testing. In addition, large increases in bronchoalveolar lavage (BAL) albumin concentration (636.3 +/- 170.5 micrograms/ml) were observed only in this same group of subjects. The correlation coefficient between the logarithms of the BAL eosinophil concentration and albumin concentration was +0.82 (p < 0.001), and between eosinophil-derived neurotoxin and albumin it was +0.88 (p < 0.001). In a stepwise, multiple regression analysis, eosinophils accounted for 67% of the variance in BAL albumin concentration, whereas no other cell type was a significant predictor of albumin flux into BAL fluid. We conclude that eosinophil recruitment and degranulation are associated with large increases in bronchovascular permeability after segmental antigen challenge in humans.

Adult↗

IL-5 is the predominant eosinophil-active cytokine in the antigen-induced pulmonary late-phase reaction.

The mechanism of airway eosinophilia during antigen-induced inflammation was investigated by measurement of eosinophil-active cytokines utilizing an eosinophil survival assay. In the first study, 4 patients with allergic rhinitis underwent segmental bronchoprovocation (SBP) with low, medium, and high doses of ragweed extract instilled into different bronchial subsegments; bronchoalveolar lavage (BAL) fluids were collected from each segment 12 min and 48 h after challenge. Eosinophil granule proteins and eosinophil survival activity were significantly elevated in the 48-h (late-phase) BAL fluids from these segments. Correlations were observed between the concentrations of eosinophil granule proteins and eosinophil survival activity (rs = 0.717 to 0.880, p < 0.001) in BAL fluids. Eosinophil survival activity was completely neutralized by anti-IL-5 monoclonal antibody in five of the seven 48-h samples tested representing three of the 4 patients. In the two remaining samples, eosinophil survival activity was only partially neutralized by either anti-IL-5 antibody or anti-granulocyte-macrophage colony-stimulating factor (GM-CSF) but was completely neutralized by anti-IL-5 and anti-GM-CSF in combination. Subsequently, in the second study, 10 patients with allergic rhinitis were challenged by SBP with ragweed extract. Eosinophil survival activity was significantly elevated in the 48-h BAL fluids; this activity was partially neutralized by anti-IL-5 antibody about (48%) and completely neutralized by the combination of anti-IL-5 and anti-GM-CSF antibodies. These findings suggest that the eosinophil survival activity in the late inflammatory lesions following SBP with allergen is mainly associated with IL-5, with small contributions from GM-CSF.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Increased airway inflammation with segmental versus aerosol antigen challenge.

Airway inflammation is increasingly recognized as a pivotal component of asthma. Because allergens provoke bronchial constriction and inflammation in allergic subjects, bronchial antigen challenge has emerged as a powerful technique for evaluating mechanisms involved in this process. In this study, we compare whole lung antigen challenge (WLAC) with segmental bronchoprovocation (SBP) in eight allergic, non-asthmatic, non-smoking subjects, and evaluated the response by bronchoalveolar lavage (BAL) prior to, and 48 h after antigen challenge. Both challenge techniques evoked airway inflammation, manifest as an increase in total cells and eosinophils recovered by BAL, an increase in total protein concentration, and enhanced production of superoxide anion by airspace cells. The degree to which these changes occurred was significantly greater with SBP than WLAC, and only SBP evoked persistent measurable change in alveolar macrophage density and eosinophil granule protein concentrations. Moreover, although both techniques were associated with a comparable immediate fall in FEV1, only WLAC resulted in statistically significant persistent physiologic changes 48 h afterwards. We conclude that, as anticipated, SBP produces more intense airway inflammation in allergic subjects, does not result in late airway obstruction, and offers specific advantages in studying allergen-driven airway inflammation.

Adult↗

Sudden-onset fatal asthma. A distinct entity with few eosinophils and relatively more neutrophils in the airway submucosa?

To determine the histologic differences in the airways of patients who died from sudden-onset asthma and the more common slow-onset asthma, we studied seven cases of fatal asthma. The numbers of eosinophils and neutrophils, as well as extracellular deposition of their respective granule contents in the airway mucosa and submucosa, were determined and statistically analyzed. Four of the seven patients had slow-onset asthma attacks in which the time interval between onset of asthma and death was more than 2.5 h. In contrast, three patients had sudden-onset asthma in which the time interval between onset of asthma attack and death was less than 1 h. The four patients with slow-onset fatal asthma had more eosinophils (34.1 +/- 6.3 in slow-onset; 9.7 +/- 3.5 in sudden-onset; p = 0.002) and fewer neutrophils (4.8 +/- 2.0 in slow-onset; 16.8 +/- 5.4 in sudden-onset; p = 0.008) in the airway submucosa than did patients with sudden-onset fatal asthma. In addition, within the slow-onset fatal asthma group, eosinophils exceeded neutrophils in the airway submucosa (eosinophils > neutrophils, p = 0.002). By contrast, within the sudden-onset fatal asthma group, neutrophils exceeded eosinophils (neutrophils > eosinophils, p = 0.04). We suggest that sudden-onset fatal asthma is immunohistologically distinct from slow-onset fatal asthma and that it is characterized by a relative paucity of eosinophils in the face of an excess of neutrophils in the airway submucosa.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Human eosinophil major basic protein is an endogenous allosteric antagonist at the inhibitory muscarinic M2 receptor.

The effect of human eosinophil major basic protein (MBP) as well as other eosinophil proteins, on binding of [3H]N-methyl-scopolamine ([3H]NMS: 1 x 10(-10) M) to muscarinic M2 receptors in heart membranes and M3 receptors in submandibular gland membranes was studied. MBP inhibited specific binding of [3H]NMS to M2 receptors but not to M3 receptors. MBP also inhibited atropine-induced dissociation of [3H]NMS-receptor complexes in a dose-dependent fashion, demonstrating that the interaction of MBP with the M2 muscarinic receptor is allosteric. This effect of MBP suggests that it may function as an endogenous allosteric inhibitor of agonist binding to the M2 muscarinic receptor. Inhibition of [3H]NMS binding by MBP was reversible by treatment with heparin, which binds and neutralizes MBP. Eosinophil peroxidase (EPO) also inhibited specific binding of [3H]NMS to M2 receptors but not to M3 receptors and inhibited atropine-induced dissociation of [3H]NMS-receptor complexes. On a molar basis, EPO is less potent than MBP. Neither eosinophil cationic protein nor eosinophil-derived neurotoxin affected binding of [3H]NMS to M2 receptors. Thus both MBP and EPO are selective allosteric antagonists at M2 receptors. The effects of these proteins may be important causes of M2 receptor dysfunction and enhanced vagally mediated bronchoconstriction in asthma.

Allosteric Regulation↗

Eosinophil cationic granule proteins impair thrombomodulin function. A potential mechanism for thromboembolism in hypereosinophilic heart disease.

Thromboembolism is a prominent but poorly understood feature of eosinophilic, or Loeffler's endocarditis. Eosinophil (EO) specific granule proteins, in particular major basic protein (MBP), accumulate on endocardial surfaces in the course of this disease. We hypothesized that these unusually cationic proteins promote thrombosis by binding to the anionic endothelial protein thrombomodulin (TM) and impairing its anticoagulant activities. We find that MBP potently (IC50 of 1-2 microM) inhibits the capacity of endothelial cell surface TM to generate the natural anticoagulant activated protein C (APC). MBP also inhibits APC generation by purified soluble rabbit TM with an IC50 of 100 nM without altering its apparent Kd for thrombin or Km for protein C. This inhibition is reversed by polyanions such as chondroitin sulfate E and heparin. A TM polypeptide fragment comprising the extracellular domain that includes its naturally occurring anionic glycosaminoglycan (GAG) moiety (TMD-105) is strongly inhibited by MBP, whereas its counterpart lacking the GAG moiety (TMD-75) is not. MBP also curtails the capacity of TMD-105 but not TMD-75 to prolong the thrombin clotting time. Thus, EO cationic proteins potently inhibit anticoagulant activities of the glycosylated form of TM, thereby suggesting a potential mechanism for thromboembolism in hypereosinophilic heart disease.

Aged↗