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Ascaris and eosinophil. II. Isolation and characterization of eosinophil chemotactic factor and neutrophil chemotactic factor of parasite in Ascaris antigen.

In the previous study, we found an eosinophil chemotactic factor of the parasite (ECF-P) in extracts from the body cavity fluid of the Ascaris species. In this study, the physiochemical characteristics of ECF-P were determined in order to elucidate the relationship between ECF-P and Ascaris antigens. ECF-P was active in both in vivo and in vitro chemotactic assay systems and was found to be heat labile, nondialyzable, and stable to lyophilization. The estimated m.w. was approximately 30,000 daltons. The isoelectric point of ECF-P was 8.5. It was quite different from the Ascaris antigen in the same extract, or various Ascaris allergens that had been reported previously by other researchers. Furthermore, ECF-P did not show any activity in eliciting a guinea pig passive cutaneous anaphylaxis (PCA) reaction. From these experimental results, we concluded that ECF-P is not identical to Ascaris antigens. In addition, we found that the neutrophil chemotactic factor of the parasite (NCF-P), with at least two components, is present in the Ascaris extract, and is also heat labile and resistant to dialysis and lyophilization, but separable from coexistent ECF-P by reason of their different physiochemical properties.

Animals

Biochemical studies on the muscle microsomes of Ascaris lumbricoides var. suum. I. Biochemical characterization and electron transport of Ascaris microsomes.

Two subcellular fraction, P-1 and P-2, were isolated by differential centrifugation from 0.25 M sucrose muscle homogenates of the parasitic roundworm, Ascaris lumbricoides suum. Morphological studies indicated that P-1 fraction consisted of intact mitochondria, whereas P-2 fraction consisted almost exclusively of vesicular components. The difference spectrum of Ascaris microsomes showed a characteristic b-type cytochrome spectrum with three distinct absorption peaks at 560, 525, and 424 nm. However, the alpha-peak at 560 nm was asymmetric with a shoulder at 555 nm. This microsomal b-type cytochrome was reduced by NADH, which was inhibited by rotenone and HgCl2. The reduced b-type cytochrome was easily reoxidized by shaking. NADH-oxidase activity observed in Ascaris microsomes was inhibited by rotenone, but not by KCN, NaN3, and antimycin A. On the other hand, NADH-cytochrome c and NADH-neotetrazolium (NT) reductase activities in Ascaris microsomes were not inhibited by antimycin A and rotenone, but were inhibited by HgCl2. Further observations indicated that neither HgCl2 nor rotenone inhibited Ascaris microsomal NADH-ferricyanide (FC) reductase activity, but rabbit antibody prepared against the purified NADH-FC reductase inhibited the NADH-cytochrome c reductase activity, the reduction of b-type cytochrome and the NADH-oxidase activity, as well as microsomal NADH-FC reductase activity.

Animals

Biochemical studies on the muscle microsomes of Ascaris lumbricoides var. suum. II. Purification and characterization of b-type cytochrome and NADH-ferricyanide reductase from Ascaris muscle microsomes.

A b-type cytochrome and NADH-ferricyanide (FC) reductase were solubilized from Ascaris muscle microsomes by detergents and purified by column chromatography. The purified b-type cytochrome displayed absorption bands at 560 (alpha-peak), 525 (beta-peak), and 424 nm (gamma-peak), with a marked shoulder at 555 nm in the reduced from, 415 nm (gamma-peak) in the oxidized form. This absorption spectrum was different from that of rat liver microsomal cytochrome b5. The molecular weight was estimated to be about 100,000 by SDS-polyacrylamide gel electrophoresis, and the absorption spectrum of alkaline pyridine ferrohemochrome suggested that the prosthetic group of this cytochrome is protoheme. The molecular weight of the purified NADH-FC reductase was estimated to be about 55,000 by SDS-polyacrylamide gel electrophoresis. The purified reductase required NADH as a specific electron donor. The reductase efficiently reduced some redox dyes with NADH, but the reduction of cytochrome c was much slower. The purified reductase, like the membrane-bound reductase, was not inhibited by thiol reagents.

Animals

Studies on species specificity of proteins in Ascaris lumbricoides and Ascaris suum.

The separate identity of A. lumbricoides and A. suum was confirmed by means of the disc electrophoresis method in that differences were established in the protein profile of somatic and ribosomal proteins. In addition differences were found in the representation of lipoproteins, glycoproteins, and in the activity of LDH, SDH, peroxidase, esterase and alkalic phosphatase.

Animals

Studies on the subunits of myosin from muscle layer of Ascaris lumbricoides suum.

1. A purified preparation of Ascaris myosin was obtained from the muscle layer of Ascaris lumbricoides suum, using gel filtration and ion-exchange chromatography. 2. Ascaris myosin whether purified or unpurified, had almost the same ability for ATP-splitting and superprecipitation. 3. Ascaris myosin and rabbit skeletal myosin were subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis. A significant difference in the number of light chains between both myosins was found. Ascaris myosin was found to have one heavy chain and two distinct light chain components (LC1-A and LC2-A), having molecular weights of 18000 and 16000, respectively. These light chains correspond in molecular weight to the light chain 2 (LC2-S) and light chain 3 (LC3-S) in rabbit skeletal myosin. 4. LC1-A could be liberated from the Ascaris myosin molecule reacted with 5,5'-dithio-bis(2-nirobenzoic acid( Nbs2) with recovery of ATPase activity by addition of dithiothreitol. These properties are equivalent to those of the LC2-S in rabbit skeletal myosin, although Ascaris myosin when treated with Nbs2-urea lost its ATPase activity.

Adenosine Triphosphatases

Effect of ascaris extract applied intravenously, on segment bronchus and the influence of ipsilateral vagus blockade.

Respiratory hypersensitivity and systemic effects after local application of Ascaris suum extract on the segmental bronchus and after its intravenous infusion are studied on four boxer dogs. Influence of ipsilateral vagus blockade on the respiratory hyperreactivity after intrabronchial application of ascaris was also investigated on the same dogs. Ascaris extract was applied in liquid form directly through a catheter into the right segmental bronchus. Egg albumin was applied in the same way for control. Local application of ascaris was repeated after ipsilateral central vagus blockade and once more after recovering vagus effect by lavage. At the end of the experiments ascaris extract was infused intravenously. The parameters studied were: deltaP(oes) mm Hg/100 ml TV (as a measurement of flow resistance in the airways), respiratory rates, arterial blood gases and pH, heart frequency, systemic blood pressure and histamine concentration per milliliter of plasma. All the animals presented a remarkable respiratory distress with local ascaris application, which could be clearly avoided with ipsilateral central vagus blockade. This respiratory hyperreactivity was not observed after intravenous infusion of ascaris extract, but a significant systemic effect, which was not the case after local application, could be observed.

Airway Resistance

Specificity and sensitivity of skin test reactions to extracts of Toxocara canis and Ascaris suum. I. Skin tests done on infected guinea pigs.

The specificity and sensitivity of adult and larval somatic antigens, and perienteric fluid of Toxocara canis and Ascaris suum were investigated by using intradermal skin tests in guinea pigs. These animals were infected with low doses (0.01, 0.1 or 1.0 egg/g) of these helminths. Toxocara larval antigen (TL) induced larger reactions in Toxocara-infected animals than did the other antigens, suggesting a superior sensitivity for this antigen. In addition, Ascaris perienteric fluid (AP) provoked skin responses in these animals of a magnitude similar to those induced by TL. The reciprocal relationship, i.e., comparable reactivity of AP and TL in Ascaris-infected animals, was not apparent. In general, Ascaris larval antigen and AP elicited larger intradermal reactions than other antigens in Ascaris-infected animals. The results of this study indicated no superiority of adult antigens in differentiating Ascaris and Toxocara infections.

Animals

Ascaris lumbricoides and allergic asthma: A new perspective.

Infestation of humans with the parasite Ascaris lumbricoides may induce high total serum IgE levels, but the influence of this immunogenic response on allergic asthma has not been defined. In this study, the specific antiparasitic IgE-mediated response as determined by skin-prick testing was related to the incidence of allergic asthma in Ascaris-infested patients. A limited number--17% of the non-allergic controls and 51% of the allergic asthmatics--had a clinically detectable immunogenic response to the parasite. The predicted incidence of asthma was significantly higher than the observed incidence in the subjects in whom the Ascaris skin test was positive. This was not found in subjects in whom the Ascaris skin test was negative. Inhalation of Ascaris antigen induced asthmatic reactions in 7 of 8 patients who were Ascaris-positive on skin testing, but not in the negative controls. The groups of patients who respond immunogenically to parasite infestation need to be defined, as they may be predisposed to allergic diseases such as asthma.

Adolescent

Demonstration and possible function of NADH:NAD+ transhydrogenase from ascaris muscle mitochondria.

Mitochondria from the muscle of Ascaris lumbricoides var. suis function anaerobically. NADH is generated in the intermembrane space as a consequence of the "malic" enzyme reaction. It has been suggested that this reducing equivalent in the form of hydride ion, would be translocated across the inner membrane in order to mediate ATP generation via the fumarate reductase reaction. In accord with this suggestion, intact Ascaris mitochondria showed appreciable NADH oxidase activity. Sonication resulted in an approximately 2-fold increase in NADH oxidase activity, whereas "malic" enzyme, fumarase, and NADH:NAD+ transhydrogenase activities increased approximately 7- to 14-fold, respectively. Phosphorylation capabilities and permeability toward pyridine nucleotides also indicated the intactness of the mitochondria. Ascaris mitochondria incubated anaerobically in the presence of fumarate, and [14C]NADH catalyzed a rapid reduction of the fumarate to succinate with the concomitant formation of equivalent quantities of extramitochondrial NAD+. However, very little isotope was recovered from the washed mitochondria, indicating the possibility of hydride ion translocation in the absence of nucleotide translocation. NADH:NAD+ transhydrogenase has been isolated from the muscle mitochondria of the intestinal nematode, Ascaris lumbricoides var. suis. The enzyme seems to have been solubilized from the mitochondrial membrane fraction by treatment with sodium deoxycholate followed by dialysis and subsequent adsorption by and elution from alumina C gamma. No NADPH:NAD+ transhydrogenase activity was detectable, making the Ascaris system unique over others reported. Activity was protected by L-cysteine, reduced glutathione and dithioerythritol, but strongly inhibited by low concentrations of p-chloromercuribenzoate or silver nitrate. The thionicotinamide derivative of NAD+ (thioNAD+) was employed to accept hydride ions from NADH in order to assay spectrophotometrically at 398 nm. Apparent Km values for thioNAD+ and NADH were 1 X 10(-4) M and 8 X 10(-6) M, respectively. That the physiological nucleotide, could act as hydride ion acceptor from NADH was indicated by the findings that NAD+ competitively inhibited the reduction of thioNAD+ when assayed at 398 nm. The additional finding of a noncompetitive inhibition between NAD+ and NADH suggested at least two binding sites on the enzyme, one for NADH and another common site for NAD+ and thioNAD+. More conclusive evidence indicating the participation of NAD+ as acceptor was obtained by incubation of the enzyme with NADH and [14C]NAD+ and demonstrating a rapid formation of [14C]NADH. These findings, in conjunction with those discussed above, suggest a physiological function of this enzyme in hydride ion translocation.

Aerobiosis

Elevated levels of IgE antibodies to ascaris and mite antigens in Papua New Guinea.

Levels of IgE as well as specific IgE antibodies to ascaris and mite have been studied in two groups in Papua New Guinea (PNG), patients with primary liver carcinoma (PLC) and normal blood donors, and in two groups in Japan, normal subjects and asthmatic patients. A radioallergosorbent test was used to measure IgE antibodies to ascaris and mite antigens. Much higher levels of IgE were found in the Papua New Guinean subjects than the normal Japanese subjects. Also levels of IgE antibodies to ascaris were much higher in Papua New Guineans than in the Japanese subjects. Though similar results were observed in IgE antibodies to mite, difference between normal Papua New Guineans and normal Japanese was small, whereas difference between the patients with PLC in PNG and the normal Japanese subjects was very large. Highest levels of IgE antibodies to mite were detected in Japanese with asthma. No correlations were observed among IgE levels, levels of IgE antibodies to ascaris and levels of IgE antibodies to mite. It is concluded that both ascaris and mite IgE antibodies contribute the very high levels of IgE seen in Papua New Guineans, but many other factors may be operative.

Antibodies

Haemagglutination tests in the study of Ascaris epidemiology.

Haemagglutination tests using adult Ascaris suum antigen were performed on sera from 810 people from three areas in Papua New Guinea and East Timor. In the area with the highest childhood Ascaris infection rates and egg-counts (Kaul), titres were highest and remained high throughout life. There was a significant negative correlation between titre and eosinophil count, and it is suggested that high titres in adult life result from continuous usually unsuccessful reinfection, and that the declining egg-counts and infection rates with increasing age may be the result of an immune mechanism, and not decreased exposure. In the two other populations the less intense Ascaris infection was reflected in the lower titres, with no correlation between titres, infection or eosinophilia. Although the haemagglutination test as used here is unsuitable as a diagnostic aid, it is valuable in studying the epidemiology of Ascaris infections.

Animals

IgE-type antibodies to Ascaris antigens in man.

IgE antibodies to Ascaris antigens were detected by radioallergosorbent test (RAST) in the serum obtained from a person experimentally sensitized with Ascaris suum antigens prepared from the body fluid of worms. This serum passively sensitized human skin in vitro and histamine release from the sensitized skin was observed by challenge with antigens. The allergenicity of A. suum antigens was present over a very broad spectrum of molecular size. The present results suggest that specific IgE antibodies to Ascaris antigens might be in Ascaris-infected patients and allergic symptoms which belong to type 1 reaction might be mediated by IgE in these patients.

Antibody Formation

Airway sensitivity to slow-reacting substance of anaphylaxis, histamine, and antigen in Ascaris sensitive monkeys.

The effects of Ascaris suum antigen, histamine, and slow-reacting substance of anaphylaxis (SRS-A) on the respiratory system were compared in 3 anesthetized rhesus monkeys. The agents were administered by instillation into the trachea, and the animals were studied in a volume displacement body plethysmograph. Two of the animals showed skin and bronchial sensitivity to Ascaris suum antigen and responded to it with increased pulmonary resistance and decreased dynamic compliance. A similar response was seen in all 3 animals after instillation of histamine, but SRS-A at 2 concentrations produced a predominant effect of decreased dynamic compliance with lesser alterations in pulmonary resistance. The effects of SRS-A were slow in onset and prolonged, as compared to the abrupt and short-lived effects of Ascaris suum antigen and histamine. The predominant effect of SRS-A on dynamic compliance suggests a more peripheral site of action of this mediator. In 5 monkeys allergic to Ascaris, no SRS-A could be detected in the blood at one and 5 min after antigen challenge, using the bioassay techniques.

Administration, Topical

Specificity and sensitivity of skin test reactions to extracts of Toxocara canis and Ascaris suum II. Homologous 48-hour passive cutaneous anaphylaxis tests with sera from infected guinea pigs.

The specificity and sensitivity of adult and larval somatic antigens and perienteric fluid of Toxocara canis and Ascaris suum were investigated by using a modified passive cutaneous anaphylaxis procedure in guinea pigs. Pooled sera from animals infected with low doses (0.01, 0.1, or 1.0 egg/g) were most reactive with the homologous larval antigen preparation. However, the Toxocara antisera were highly reactive with this antigen only, whereas the Ascaris antisera reactions could not be interpreted as being clearly positive with any of the antigen preparations. Sera from hyperinfected animals were also reactive with the homologous larval antigen. In addition, Ascaris larval antigen was reactive with Toxocara antiserum. The reciprocal relationship, i.e., reactivity of Toxocara larval antigen with Ascaris antiserum, was no apparent. In no instance did adult antigens induce reactions that could be interpreted as specific or sensitive indicators of antibody.

Animals

Scanning electron microscopy of the eggs of Ascaris lumbricoides, A. suum, Toxocara canis, and T. mystax.

Eggs of Ascaris lumbricoides, A. suum, Toxocara canis, and T. mystax were examined by scanning electron microscopy (SEM). All species under study exhibited pronounced surface ridges. The ridges formed distinctive patterns in T. canis and T. mystax. In the Ascaris species, the ridges are similar except that they are more pronounced in the eggs of A. suum. Operculumlike structures were observed only in Ascaris. Correlation of data from SEM with previously reported transmission electron microscopy suggests that the surface ridges seen in Ascaris eggs are formed by the chitinous layer of the shell.

Animals

Bronchial challenge of tropical asthmatics with Ascaris lumbricoides.

Despite the fact that helminthic parasites can stimulate strong immediate hypersensitivity reactions, it is uncertain whether these are relevant to the development of allergic disease in infected patients. In order to examine this possibility, we tested 20 informed chronic asthmatic patients from an Ascaris-endemic area by bronchial challenge with a partially purified extract of this parasite. Sequential measurements were made of both the forced expiratory volume in the first second (FEV1) and the peak expiratory flow rate (PEFR) up to 6 h postchallenge, then of PEFR from 6 to 14 h and at 24 h. These were compared to the effect of control inhalations of saline. Extremely low doses of Ascaris antigen that did not exceed 10 PNU (6 x 10(-7) g of protein) induced significant reductions (> 20%) in FEV1 within 30 min in 3 (15%) patients, and in PEFR in 5 cases (25%). By 6 h postchallenge, 5 (25%) subjects showed significant alterations in FEV1, and 10 (50%) in PEFR. Significant changes in PEFR were recorded between 6 and 24 h in 12 (60%) patients. The challenge of nonasthmatic subjects from the same Ascaris-endemic area did not produce notable changes in pulmonary function, and although asthmatics with no evidence of prior contact with the parasite showed a certain degree of immediate bronchial reactivity to the parasite extract, the late responses were significantly less frequent than in the infected patients. No correlations were detected between the bronchial responses and skin test reactivities to the Ascaris extract, or serum levels of specific IgE or IgG antibody.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent

Scalable assembly of Ascaris mitogenomes from whole-genome data reveals a novel clade.

The genus Ascaris is an important group of giant parasitic roundworms, infecting over 700 million people globally and causing substantial economic losses in domestic pigs. Whilst species of Ascaris are morphologically indistinguishable, analysis of mitochondrial loci has revealed three clades (A, B, C) broadly associated with host species and geographic distribution. The diversity within these lineages may expand with the addition of further genomic data. Here, we present a bioinformatic framework for de novo assembly of complete mitochondrial genomes (mitogenomes) from low-coverage whole-genome data through host-read depletion or mtDNA read enrichment, followed by mtDNA-specific assembly. Our approach yielded 149 high-quality Ascaris mitogenome assemblies, enabling the study of population-level diversity, including the identification of a novel clade (Clade D, designated here) associated with human samples from Ethiopia. Our analysis further revealed Clade C to comprise of pig-derived samples from Europe based on characterisation of worms isolated in Germany. The methods described here provide a scalable framework for mitogenome reconstruction with insights into roundworm population-genomic and phylogenetic studies.

Animals