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Biomedical subjects

G J Gleich

Publications and source records attributed to G J Gleich.

At least 271 records · Page 15Linked to original sources

Biochemical and amino acid sequence analysis of human eosinophil granule major basic protein.

Eosinophil granule major basic protein (MBP) is a relatively low molecular weight cationic (pI greater than 10) protein present in the crystalloid core of the eosinophil granule. Amino acid sequence analysis of this protein was undertaken as part of an analysis of the structural basis of the potent cytotoxic activities of MBP on parasites and mammalian cells. Many conventional sequencing strategies were unworkable because of the unusual amino acid composition of MBP and its insolubility in solutions buffered at neutral pH. Less conventional chemical reactions, including cyanogen bromide-induced cleavage at tryptophan and acid-induced cleavage at aspartic acid, were used successfully to obtain peptides which allowed definition of the amino acid sequence of MBP. Characterization of MBP by reverse-phase high pressure liquid chromatography and two-dimensional gel analysis showed no microheterogeneity that might be attributed to post-translational modifications. Comparison of the MBP sequence with a protein sequence data base showed that MBP has no significant sequence homology with other characterized proteins. The basicity (pI 10.9) and hydrophobicity predicted from the MBP sequence are likely responsible for the observed affinity of this cytotoxic molecule for cell surfaces and some serum proteins.

Amino Acid Sequence↗

Eosinophil granule major basic protein regulates generation of classical and alternative-amplification pathway C3 convertases in vitro.

Eosinophil major basic protein (MBP), a highly charged polycation, forms the core of the eosinophil granule and mediates tissue damage in allergic disease. Purified MBP was studied for capacity to regulate the generation of classical and alternative-amplification pathway C3 convertases because previous studies have shown that other polycations (protamine, poly-L-lysine) and polyanions (heparin) may play important roles in regulating C activation. MBP inhibited the generation of EAC1,4b,2a and EAC4b,3b,Bb,P but appeared to inhibit the generation of classical pathway convertase more than the alternative amplification pathway convertase at a given dose. Dose-response curves with MBP were steeper than curves seen with polyanion (heparin). MBP did not lyse cellular intermediates at concentrations that caused almost total inhibition of convertase generation. One mechanism of inhibition of convertase generation may have been through an action on C3b, because preincubation of MBP with an EAC4b,3b cellular intermediate interfered with the ability of this cellular intermediate to be lysed. Furthermore, MBP prevented consumption of B in a reaction mixture that contained factors B, D, and C3b, also suggesting an action on C3b. Reduced and alkylated MBP (A-MBP) was compared with native MBP, which possesses two reactive sulfhydryl groups, to determine whether charge alone is responsible for blocking convertase generation; native MBP rapidly associates and is relatively insoluble at neutral and alkaline pH whereas A-MBP remains soluble. A-MBP impaired convertase generation, did not appear to remain bound to cellular intermediates and did not suppress B consumption in the fluid phase assay. This suggests that the ability of MBP to regulate C activation is complex and not entirely through its net charge. Finally, although heparin or MBP alone may prevent C activation, when these substances were present at the same time there was no effect on C activation suggesting that charge neutralization may abrogate the effects of these charged substances on C activation. Taken together, these studies suggest that MBP at physiologic concentrations may regulate in vivo C activation at the tissue level.

Alkylation↗

A clinical and pathologic study of chronic sinusitis: the role of the eosinophil.

Evidence exists that the eosinophil plays an important role in mediating injury to bronchial epithelium in chronic asthma. Here, the role of the eosinophil in chronic inflammatory disease of the paranasal sinuses was studied with tissue from patients who underwent surgery for chronic sinusitis. Paranasal tissue from patients with chronic asthma and/or allergic rhinitis was extensively infiltrated with eosinophils. Immunofluorescent studies demonstrated a striking association between the presence of extracellular deposition of major basic protein and damage to sinus mucosa. The histopathology of paranasal respiratory epithelium appeared similar to that described in bronchial asthma. These findings suggest that the eosinophil acts as an effector cell in chronic inflammatory disease of paranasal respiratory epithelium. Thus, sinus disease in patients with asthma may be due to the same mechanisms that cause damage to bronchial epithelium.

Adolescent↗

A pathologic study of allergic bronchopulmonary aspergillosis.

A lung biopsy specimen was obtained from a 10-year-old boy with cystic fibrosis and allergic bronchopulmonary aspergillosis. Light microscopy revealed a marked inflammatory process that was largely bronchocentric. Infiltrating cells included lymphocytes, plasma cells, monocytes, and numerous eosinophils. Elastin layers were intact in blood vessels and markedly disrupted in bronchioles. By immunofluorescent, major basic protein was demonstrated in eosinophils, was freely deposited outside of eosinophils, especially in the interlobular septum, and was taken up by macrophages. A number of lymphocytes stained positively for IgE. Through an immunoperoxidase stain, septate hyphae of Aspergillus were clearly observed in the lung parenchyma. A significant increase in interleukin-2 positive-staining T cells was observed with an approximate 2:1 ratio of helper to suppressor cells. The use of newer immunohistologic techniques has enabled us to gain additional insights into the pathogenesis of allergic bronchopulmonary aspergillosis.

Aspergillosis, Allergic Bronchopulmonary↗

Establishment of an immature mast cell line from a patient with mast cell leukemia.

A cell line showing many characteristics of immature mast cells has been established from the peripheral blood of a patient with mast cell leukemia. Cultured cells contain low levels of histamine, are stained metachromatically by toluidine blue, and contain chloroacetate esterase, aminocaproate esterase and tryptase activities. The cells lack T and B lymphocyte, as well as myeloid cell markers, and do not possess IgE receptors. Solid tumors of metachromatically positive cells have been successfully induced and serially passed in nude mice using 5-azacytidine transformed cells. This cell line may be useful for future studies of mast cells and their constituents.

Animals↗

Acute interstitial nephritis: immunologic and clinical aspects.

Acute interstitial nephritis is a common renal syndrome that may be associated with a variety of infections and drug therapies or may develop without an identified cause. Three cases are presented to illustrate the three types of acute interstitial nephritis--drug related, infection related, and idiopathic. Cell-mediated immune mechanisms seem to be more important than humorally mediated mechanisms in the pathogenesis of acute interstitial nephritis. Frequently, eosinophils are identified as a component of the interstitial cellular infiltrate, and eosinophiluria and eosinophilia have been claimed to be helpful in the diagnosis of acute interstitial nephritis, especially the drug-induced type. Neither eosinophiluria nor the presence of increased urinary levels of eosinophil major basic protein, however, is specific for the diagnosis of acute interstitial nephritis. Patients with drug-induced interstitial nephritis frequently have symptoms and signs suggestive of a hypersensitivity syndrome and rarely have more dramatic anaphylactic manifestations. Systemic glucocorticoids have been shown to be beneficial in this type of acute interstitial nephritis.

Acute Disease↗

Effect of human eosinophil major basic protein on ion transport in dog tracheal epithelium.

Eosinophil major basic protein (MBP) is a granule-associated cytotoxic protein found in sputum and deposited on airway tissues of patients with acute asthma. We therefore studied the effect of human MBP on ion transport in dog tracheal epithelium. We mounted the posterior tracheal membranes of mongrel dogs in Ussing chambers and measured potential differences across the membranes and short-circuit current. Using 22Na+ and 36Cl- as tracers, we determined net ion movements. The addition of MBP (5 X 10(-6) M) to the mucosal, but not to the serosal, side of the membranes produced an increase in short-circuit current from 2.25 +/- 0.19 (mean +/- SE) to 2.78 +/- 0.23 muEq.cm-2h-1 (p less than 0.0001) and in net chloride secretion from 1.57 +/- 0.22 to 2.31 +/- 0.24 muEq.cm-2h-1 (p less than 0.01). There was no change in net sodium movement. Pretreatment with indomethacin (10(-5) M) attenuated, but did not abolish, the increase in short-circuit current. After exposure to MBP, prostaglandin E2 release into the serosal bathing solution increased from 10.0 +/- 4.2 to 17.0 +/- 6.9 ng.cm-2h-1 (p less than 0.05). The results of this study indicate that MBP simulates prostaglandin E2 production and chloride secretion by dog tracheal epithelium. Thus, eosinophils in the airways, through release of MBP, may affect mucociliary clearance by changing the volume and composition of respiratory tract fluid.

Animals↗

Eosinophils and mast cells in bronchoalveolar lavage in subjects with mild asthma. Relationship to bronchial hyperreactivity.

We have performed bronchoalveolar lavage (BAL) on 17 subjects with mild atopic asthma (9 symptomatic, 8 asymptomatic) and 14 nonasthmatic control subjects (6 hay fever, 8 nonatopic). There was a significant increase in the percentage of mast cells in both groups of asthmatics although the counts were no different from those previously reported for a number of other respiratory diseases. Asthmatics with airway hyperreactivity (PC20 less than 4 mg/ml) had significant increases in spontaneous histamine release. There was a significant elevation in the eosinophil count and the concentration of major basic protein (MBP) in BAL fluid in the symptomatic asthmatics. Furthermore, there was a significant correlation between the amounts of MBP recovered and the percentage of eosinophils in the BAL. These changes were even more marked when asthmatics with airway hyperreactivity were compared with subjects with normoreactive airways. In addition, there was a significant increase in the percentage of epithelial cells in the hyperreactive asthmatics. There was an inverse correlation between the PC20 and the percentage of mast cells (p less than 0.01), eosinophils (p less than 0.05), and epithelial cells (p less than 0.05) and amount of MBP in BAL (p less than 0.01). This study supports the hypothesis that bronchial hyperresponsiveness is secondary to epithelial cell damage mediated through eosinophil-derived granule products.

Adult↗

Human eosinophil major basic protein causes hyperreactivity of respiratory smooth muscle. Role of the epithelium.

Major basic protein (MBP), one of several cationic proteins associated with the eosinophil granule, is cytotoxic to respiratory epithelium and is present in the sputum of asthmatics and on damaged bronchial epithelium from patients dying of asthma. The present experiments were performed in order to determine the effects of MBP on the responsiveness of airway smooth muscle. Rings of guinea pig trachea, in some of which the epithelium had been gently removed by rubbing, were incubated for 5 h in modified Krebs-Ringer bicarbonate solution containing buffer or human MBP (100 micrograms/ml). The tracheal rings were then suspended for isometric tension recording in organ chambers filled with Krebs-Ringer solution containing indomethacin. MBP did not affect the reactivity of rings in which the epithelium had been removed, but significantly augmented that of unrubbed rings to acetylcholine and histamine. The results suggest that MBP, by inhibiting the function of epithelial but not smooth muscle cells, causes hyperreactivity of respiratory smooth muscle, which may contribute to the hyperreactivity observed in chronic respiratory disease.

Acetylcholine↗

Toxic effects produced or mediated by human eosinophil granule components on Trypanosoma cruzi.

The eosinophil granule major basic protein, the eosinophil cationic protein, and the eosinophil-derived neurotoxin were found to be lytic for Trypanosoma cruzi trypomastigotes from blood, cell cultures, or insect vectors and for cultured amastigotes. The toxic effects of the major basic and cationic proteins were inhibited by the polyanions heparin and dextran sulfate, in keeping with the cationic nature of these proteins, or by heat denaturation, suggesting that molecular conformation was also relevant. The lytic activity of the neurotoxin was not inhibited by heating at 56 degrees C for 4 hr, establishing an additional difference with the eosinophil cationic protein. Heparin had only a slight inhibitory effect on the toxicity of the neurotoxin, and dextran sulfate was inactive even at 25 mg/ml. Although both the eosinophil cationic protein and the neurotoxin possess ribonuclease activity, only the toxicity of the latter was abolished by the ribonuclease inhibitor RNasin (Promega, Madison, Wisconsin) or by a competitive substrate, yeast ribonucleic acid. Eosinophil peroxidase significantly increased the extent of trypomastigote or amastigote killing by hydrogen peroxide in the presence of iodide. This effect was abrogated by sodium azide, bovine serum albumin, or gelatin, known inhibitors of the eosinophil peroxidase + halide + hydrogen peroxide system. These results suggest that the destruction of T. cruzi trypomastigotes and amastigotes by eosinophils may result from toxic mechanisms involving several granule proteins.

Animals↗

Ultrastructural study of eosinophils from patients with the hypereosinophilic syndrome: a morphological basis of hypodense eosinophils.

We investigated the ultrastructural characteristics and the granule major basic protein (MBP) content of hypodense eosinophils from patients with the hypereosinophilic syndrome who had at least 90% hypodense eosinophils in their peripheral blood and compared these cells to normodense eosinophils from normal persons. The hypodense cells (density less than 1.082) contained significantly less MBP than normodense (density greater than 1.082) eosinophils (P less than .001) as measured by radioimmunoassay (RIA). Electron microscopic examination demonstrated a mean of 25.0 +/- 4.4 (X +/- 1 SD) granules per hypodense cell, compared to 30.6 +/- 8.4 granules per cell in the normodense group (P less than .1). The most striking difference between the hypodense and normodense eosinophils was the small individual granule size (X = .14 +/- .05 v .26 +/- .05 micron 2, respectively, P less than .001), and the smaller total granule area (3.2 +/- 1.8 vs 7.7 +/- 3.1 micron 2, respectively, P less than .001). Because the cytoplasmic areas were similar in the two groups, the mean percent area of cytoplasm occupied by granules was significantly lower in the hypodense group (P less than .001). The finding of consistently smaller granules in the presence of equal or fewer granules per cell in the hypodense eosinophils may explain the lower MBP content and thus provide a morphologic basis for the low density of eosinophils in patients with the hypereosinophilic syndrome.

Densitometry↗

Localization of eosinophil major basic protein onto eggs of Schistosoma mansoni in human pathologic tissue.

The eosinophil granule major basic protein (MBP), constituting the core of the granule, is toxic to helminths and mammalian cells in vitro. To determine whether eosinophil degranulation and extracellular MBP deposition occur in schistosomal lesions in human tissues, the authors performed an indirect immunofluorescence assay on sections of formalin-fixed, paraffin-embedded specimens from patients infected with Schistosoma mansoni. A total of 8 liver and 4 colon specimens from 12 patients were examined. In the liver, 22 eggs were observed; only 3 of these were not confined to granulomas, and none of these 3 demonstrated extracellular MBP deposition in close proximity to the eggs. The remaining 19 eggs were confined to granulomas and 12 showed extracellular MBP deposition either on the surface of or in close proximity to the eggs. In the colon, 90 eggs were observed; 87 were not confined to granulomas, and none of these had MBP deposited on them. The remaining three eggs were confined to granulomas and only one showed MBP deposition. Finally, intense extracellular MBP deposition was noted in granulomas in association with the Splendore-Hoeppli phenomenon. The results show that the helminthotoxic MBP is deposited on eggs in granulomas in human tissues and suggest that the Splendore-Hoeppli phenomenon is accounted for in part by deposition of eosinophil granule MBP.

Animals↗

Systemic vasculitis associated with eosinophilia and marked degranulation of tissue eosinophils.

A 9-year-old girl had fever, life-threatening interstitial pneumonia, a vesicular skin rash, parotid and submandibular swelling, and marked blood eosinophilia (WBC count 47,000/microL, 39% eosinophils). Results of lung and skin biopsies showed vasculitis with intense eosinophil infiltration. Immunofluorescence analyses of these biopsies, as well as analysis of tissue from the parotid, lip, and trachea, showed striking deposition of eosinophil granule major basic protein associated with areas of tissue damage. Treatment with glucocorticoids and hydroxyurea produced clinical improvement. The association between tissue damage and deposition of the cytotoxic major basic protein suggests that the eosinophil contributed to the pathophysiology of this disease. Recognition of the capacity of the eosinophil to produce tissue damage can be helpful in the selection of therapy.

Blood Proteins↗

Synergism between eosinophil cationic protein and oxygen metabolites in killing of schistosomula of Schistosoma mansoni.

To study the cytotoxic reactions responsible for mediating eosinophil damage to schistosomula of Schistosoma mansoni, we have used cytoplasts (eosinophil or neutrophil vesicles devoid of granules and nuclei, with an intact oxidase in their plasma membrane) in combination with purified eosinophil cationic protein (ECP) or major basic protein (MBP) in a cytotoxicity test toward schistosomula. Suboptimal concentrations of ECP (10(-6) M) or MBP (10(-6) M) resulting in less than 10% killing were used in combination with cytoplasts. Cytoplasts alone in the presence of immune serum tested over a wide range of cytoplast:schistosomula ratios generated superoxide and hydrogen peroxide, but were unable to damage schistosomula. However, when a suboptimal ECP concentration (10(-6) M) was combined with neutroplasts or eosinoplasts, 43.9% +/- 8.5 (n = 7) and 24.7% +/- 9.8 (n = 3), respectively, of the schistosomula were killed. Oxygen metabolites were responsible for the synergism, because cytoplasts from a patient with chronic granulomatous disease were unable to act in synergy with ECP. In contrast to ECP, no synergism was found between cytoplasts and MBP (10(-6) to 2 X 10(-5)M). These results show that oxygen metabolites are important for the killing of schistosomula by lowering the concentration of ECP needed to inflict damage.

Animals↗

Deposits of eosinophil granule proteins in cardiac tissues of patients with eosinophilic endomyocardial disease.

Eosinophilic endomyocardial disease is a complication of the hypereosinophilic syndrome and of several other disorders associated with high blood eosinophil counts. Eosinophil granule proteins may be involved in the development of these lesions. This multi-centre study investigated whether these proteins could be demonstrated within the cardiac tissues of eighteen patients with eosinophilic endomyocardial disease. Serial sections of tissue taken at necropsy or at cardiac biopsy were stained for eosinophil major basic protein by indirect immunofluorescence and for eosinophil cationic protein, eosinophil protein-X, and activated eosinophils by means of alkaline-phosphatase-linked monoclonal antibodies. Activated eosinophils and secreted eosinophil granule proteins were most evident within the necrotic and later stage thrombotic lesions and were found mainly within the areas of acute tissue damage in the endocardium and in the walls of small blood vessels. These findings suggest that eosinophil granule proteins are involved in cardiac injury, producing muscle damage and vascular injury which lead to the development of endomyocardial fibrosis.

Acute Disease↗

The eosinophilic leukocyte and the pathology of fatal bronchial asthma: evidence for pathologic heterogeneity.

Classically, bronchial asthma is associated with peripheral blood eosinophilia and striking eosinophilia of bronchial tissues and sputum. Evidence exists that eosinophil degranulation commonly occurs during bronchial asthma and eosinophil granule proteins are discharged onto damaged bronchial epithelium. Analyses of 10 patients with fatal asthma showed striking eosinophil participation in eight, whereas two patients showed marked epithelial desquamation in the virtual absence of eosinophils. These results point to the possibility that a pathologic heterogeneity exists in fatal bronchial asthma, with most, but not all, patients showing evidence of eosinophil participation.

Animals↗