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Identification of the binding site of methylglyoxal on glutathione peroxidase: methylglyoxal inhibits glutathione peroxidase activity via binding to glutathione binding sites Arg 184 and 185.

Methylglyoxal (MG), a physiological alpha-dicarbonyl compound is derived from glycolytic intermediates and produced during the Maillard reaction. The Maillard reaction, a non-enzymatic reaction of ketones and aldehydes with amino group of proteins, contributes to the aging of proteins and to complications associated with diabetes. In our previous studies (Che, et al. (1997) "Selective induction of heparin-binding epidermal growth factor-like growth factor by MG and 3-deoxyglucosone in rat aortic smooth muscle cells. The involvement of reactive oxygen species formation and a possible implication for atherogenesis in diabetes". J. Biol. Chem., 272, 18453-18459), we reported that MG elevates intracellular peroxide levels, but the mechanisms for this remain unclear. Here, we report that MG inactivates bovine glutathione peroxidase (GPx), a major antioxidant enzyme, in a dose- and time-dependent manner. The use of BIAM labeling, it was showed that the selenocysteine residue in the active site was intact when GPx was incubated with MG. MALDI-TOF-MS (matrix-assisted laser desorption/ionization time-of-flight mass spectrometry) and protein sequencing examined the possibility that MG modifies arginine residues in GPx. The results show that Arg 184 and Arg 185, located in the glutathione binding site of GPx was irreversively modified by treatment with MG. Reactive dicarbonyl compounds such as 3-deoxyglucosone, glyoxal and phenylglyoxal also inactivated GPx, although the rates for this inactivation varied widely. These data suggest that dicarbonyl compounds are able to directly inactivate GPx, resulting in an increase in intracellular peroxides which are responsible for oxidative cellular damage.

Amino Acid Sequence↗

Methimazole and propylthiouracil increase cellular thyroid peroxidase activity and thyroid peroxidase mRNA in cultured porcine thyroid follicles.

Methimazole (MMI) and propylthiouracil (PTU) are common antithyroid drugs for treating hyperthyroidism because the 2 drugs inhibit thyroid peroxidase (TPO)-catalyzed thyroid hormone formation. We studied whether the 2 drugs actually inhibit cellular TPO activity in cultured porcine follicles. Porcine follicles were cultured in the presence of 1 mU/mL thyrotropin (TSH) for 7 days. Then follicles were exposed to MMI or PTU in the presence of 0.1 microM Kl for 2 days. TPO activity was measured in the 100,000 x g-pellet of the thyroid sonicate by the guaiacol oxidation method. Exposure to MMI (1 microM and 10 microM) or PTU (10 microM and 100 microM) for 2 days caused a significant increase in cellular TPO activity; 100 microM MMI inhibited cellular TPO activity. The presence of cyclic adenosine monophosphate (cAMP)-generating system (forskolin) in TSH-free medium increased MMI-mediated TPO activity. Cyclohexamide inhibited MMI-mediated TPO activation, indicating that new protein synthesis is required for increased TPO activity. Reverse transcriptase-polymerase chain reaction (RT-PCR) showed an increase in TPO mRNA by PTU or MMI. In conclusion, MMI and PTU at therapeutic concentrations can increase TPO mRNA and cellular TPO activity, although the 2 drugs inhibit the TPO-H2O2-mediated catalytic reaction.

Animals↗

Recombinant human thyroid peroxidase produced in insect cells has similar properties to native human thyroid peroxidase.

Purified native human thyroid peroxidase (nTPO) isolated from thyroid tissue and recombinant (r)TPO produced in High Five insect cells have been compared. nTPO and rTPO were purified to about 95% homogeneity and showed similar UV and visual spectra and similar 412 nm per 280 nm absorbance ratios (0.4 for nTPO and 0.4 for rTPO). The nTPO and rTPO guaiacol oxidation enzyme activities were about 1,000 guaiacol units per milligram of protein. TPO autoantibody binding characteristics of nTPO and rTPO were analyzed in an assay based on 125I-labeled nTPO and precipitation with protein A. In the assay, the effect of unlabeled nTPO or rTPO on TPO autoantibody binding from 25 patients sera was studied. Unlabeled nTPO or rTPO (from 0 to 160 ng/mL) inhibited the binding of TPO autoantibodies in a dose-dependent manner in the case of each serum studied (from 100% in the absence of unlabeled TPO to 5%-10% in the presence of 160 ng/mL of TPO). The inhibition profile for each serum was essentially identical in the case of both TPO preparations. The effect of TPO autoantibodies on enzyme activity of rTPO was analyzed after incubation of rTPO with TPO autoantibody-positive serum immunoglobulin G (IgG) (n = 12), TPO monoclonal antibodies reactive with two different epitopes on the TPO, IgG (n = 3) from glutamic acid decarboxylase autoantibody positive patient sera, and IgG (n = 3) from healthy blood donors. Effective complexing of TPO by TPO autoantibodies was tested by precipitating the complexes with solid phase protein A and measuring the TPO enzyme activity in the resulting supernatants. These studies showed that the TPO enzyme activity was not affected by incubation with TPO autoantibody-positive IgG or monoclonal antibodies despite effective complexing of the autoantibodies with TPO. Overall, our studies demonstrate that nTPO and rTPO produced in insect cells are very similar in terms of enzyme activity, UV and visible spectra, and reactivity with autoantibodies. Furthermore, in our study, TPO autoantibodies did not appear to inhibit TPO enzyme activity.

Animals↗

Differential evolution of thyroid peroxidase and thyrotropin receptor antibodies in Graves' disease: thyroid peroxidase antibody activity reverts to pretreatment level after carbimazole withdrawal.

In this study, we compared the evolution of thyroid peroxidase antibody (TPOAb) and thyroid-stimulating antibody (TSAb) activities before, during, and after treatment of Graves' disease (GD) with carbimazole. TPOAb and TSAb were measured in sera from 75 patients with GD, during an 18-month block-replace regimen and after drug withdrawal (12, 24, and 36 months). At diagnosis, TPOAb were present in 85% of the patients versus 99% for TSAb. During the treatment, TPOAb values and prevalence significantly decreased, as observed with TSAb. After drug withdrawal, TPOAb levels increased once again to reach the pretreatment values, whereas TSAb remained unchanged. TPOAb values and prevalence at drug withdrawal were not significantly different between patients who remained euthyroid and those who had a relapse of hyperthyroidism. In contrast, TSAb values and prevalence were higher at drug withdrawal in relapse patients. In conclusion, TPOAb and TSAb changes are similar during GD treatment by carbimazole but diverge after drug withdrawal. TPOAb might reflect autoimmune perturbations independently of the clinical status and of the thyroid-stimulating activity.

Adult↗

The selenium requirement for glutathione peroxidase mRNA level is half of the selenium requirement for glutathione peroxidase activity in female rats.

To determine critically the selenium (Se) requirement for weanling female rats, we used glutathione peroxidase (GSH: H2O2 oxidoreductase, EC 1.11.1.9) (GPX) mRNA and a number of other parameters to assess Se status. Rats were fed a basal torulayeast diet (0.007 micrograms Se/g) supplemented with Se as Na2SeO3 in graded levels from 0 to 0.3 micrograms Se/g diet for 32 d (3 rats/group). Selenium supplementation had no effect on growth, showing that the Se requirement for growth is less than 0.007 micrograms Se/g diet, whereas other parameters showed significant increases with Se supplementation. In rats fed the Se-deficient basal diet, liver Se concentration was 4 +/- 0%, plasma GPX activity was 8 +/- 1%, erythrocyte GPX activity was 40 +/- 3%, liver GPX activity was 2 +/- 1%, and liver GPX mRNA levels were 11-17% of the levels in rats fed 0.1 micrograms Se/g diet. Liver Se concentration and GPX activity in plasma, erythrocytes and liver all reached a plateau breakpoint at or near 0.1 micrograms Se/g diet, indicating that the dietary Se requirement for maximal GPX activity in growing female rats is 0.1 micrograms Se/g diet. Liver GPX mRNA levels reached the plateau breakpoint at 0.05 micrograms Se/g diet, showing that the minimum dietary Se requirement for maximal GPX mRNA levels in female rats is half of the Se requirement for maximal GPX activity. This experiment demonstrates that GPX mRNA can be used to determine the dietary Se requirement; the gap between the dietary Se necessary for maximal GPX mRNA and that for maximal GPX activity may represent an evolutionarily derived biological margin of safety.

Analysis of Variance↗

Anti-thyroid peroxidase antibodies in sera from healthy subjects and from patients with chronic thyroiditis: differences in the ability to inhibit thyroid peroxidase activities.

A significant percentage (6.4%) of healthy subjects was found to contain anti-thyroid peroxidase (TPO) antibodies in their sera. However, in contrast with IgG from sera of patients with chronic thyroiditis, IgG from sera of healthy subjects did not inhibit TPO activities both in guaiacol and iodide assays. In addition, anti-TPO antibodies from healthy subjects did not block the inhibition of enzyme activities by anti-TPO antibodies from patients. These findings suggest that anti-TPO antibodies from healthy subjects do not bind to the epitopes relating to substrate-combining sites of TPO. Thus, the specificities of anti-TPO antibodies in healthy subjects may differ from those in cases of chronic thyroiditis.

Adult↗

Immunohistochemical localization of glutathione peroxidase, a lipid peroxidase scavenger, in atherosclerotic lesions of human arteries.

The localization of glutathione peroxidase (GSH-PO) in the human arteriosclerotic lesions was investigated by immunohistochemical methods. GSH-PO is an enzyme that effectively reduces lipid peroxides. It is also known that its synthesis is significantly increased by lipid peroxides, the substrate of the enzyme. Accordingly, the increased expression of GSH-PO would indicate the promotion of lipid peroxidation in the site. Immunohistochemistry for Apo-B protein, the major protein component of plasma low density lipoprotein (LDL), was also performed to show the amount of plasma LDL permeation and deposition on the arterial wall. Atheromatous plaques contained numerous GSH-PO positive cells with foamy cytoplasm, while normal arterial walls were almost devoid of GSH-PO positive cells. Immunoelectron microscopically, the GSH-PO reaction products were observed diffusely in the cytoplasm of these cells. The deposition of Apo-B was closely related to the localization of GSH-PO positive cells in the atheromatous lesions. These findings suggest that the lipid peroxidation that surpasses the protective actions of GSH-PO may cause foamy change of smooth muscle cells and macrophages to ultimately form atherosclerotic lesions.

Aorta↗

Alteration in capillary permeability of horseradish peroxidase in the stria vascularis and movement of leaked horseradish peroxidase after administration of furosemide.

The permeability of horseradish peroxidase (HRP) from the capillaries of the stria vascularis and the movement of leaked HRP in this site were investigated over time after the administration of furosemide, a loop diuretic, for the purpose of clarifying the function of the stria vascularis. Guinea pigs were used as experimental animals. The stria vascularis became markedly edematous at 10 min after the administration of furosemide, while the vascular permeability of HRP was decreased. This edema was thought to result not from the high permeation of strial capillaries, but from the blockage of water transport into the ductus cochlearis by inhibition of the Na+/2Cl-/K+ cotransport system on the cell membrane of the marginal cells and the exudation from the intermediate cells due to change of cell membrane permeability. A large amount of the leaked HRP from the strial capillaries was taken into vacuoles of marginal cells 1 h after furosemide administration. In the present study, no leakage of HRP was observed in the ductus cochlearis. Destroyed or degenerated cells were observed in vacuoles of marginal cells 2 and 3 h after furosemide administration, suggesting that marginal cells have a phagocytic function. Two hours after furosemide administration, the vascular permeability of HRP and the function of intermediate cells was still at a decreased level, although the stria vascularis was almost restored to normal morphology. Three hours after furosemide treatment, the vascular permeability of HRP and the intake of HRP into intermediate cell vesicles were generally normalized, suggesting near restoration of stria vascularis function. In the non-furosemide-treated control group, no vacuolation was observed in marginal cells, nor was HRP intake observed in these cells.

Animals↗

Differential effects of methylmercuric chloride and mercuric chloride on the histochemistry of rat thyroid peroxidase and the thyroid peroxidase activity of isolated pig thyroid cells.

This study was designed to characterize the interaction of CH3HgCl or HgCl2 with thyroid peroxidase (TPO). Two types of experiments were performed. First, the thyroids from rats that were given 5.6 mg/kg/day of either CH3HgCl or HgCl2 for 2 weeks by intubation were subjected to histochemical treatment and then to electron microscopy. TPO activities in all cell compartments were inhibited by HgCl2 but not by CH3HgCl. Morphological observation showed that taller epithelia were induced by HgCl2, whereas flattened epithelia forming large follicles were induced by CH3HgCl. The serum thyrotropin level was substantially lowered by CH3HgCl but was unchanged by HgCl2. Second, the guaiacol oxidation by TPO in isolated and ruptured pig thyroid cells was spectrophotometrically monitored in the presence of either CH3HgCl or HgCl2. The TPO was not inhibited by CH3HgCl but was inhibited by HgCl2. These results indicated that CH3HgCl induced a hypothyroid state without affecting TPO, whereas HgCl2 inhibited TPO and induced a hypertropic state owing to compensation for loss of enzyme activity, and that the lack of inhibitory activity of CH3HgCl was not due to the inability to penetrate the cells. Therefore, there appeared to be a differential interaction of organic and inorganic forms of mercurials with the thyroid.

3,3'-Diaminobenzidine↗

Carbohydrate moieties in recombinant human thyroid peroxidase: role in recognition by antithyroid peroxidase antibodies in Hashimoto's thyroiditis.

We studied the oligosaccharide moieties of recombinant human thyroid peroxidase (hTPO) expressed in Chinese hamster ovary (CHO) cells, and the role of these glycans in hTPO antigenicity in Hashimoto's thyroiditis. To determine whether hTPO carbohydrate moieties were N-linked, O-linked, or both, and to obtain information about the characteristics of the carbohydrate component(s), we digested hTPO with deglycosylating enzymes of varying specificity. Proteins in CHO-TPO cells were labeled with [35S]methionine, and hTPO was immunoprecipitated with anti-hTPO antibodies present in Hashimoto's thyroiditis serum. Digestion with endoglycosidase (endo) F, which removes both complex and polymannose N-linked glycans, increased the electrophoretic mobility of the hTPO doublet from approximately 115 kD and 110 kD to 110 kD and 105 kD. Endo H, which acts similarly to endo F, but only on polymannose, and not complex, glycans, had a similar effect. In contrast, O-glycanase and neuraminidase, which remove O-linked glycans and terminal neuraminic acid, respectively, did not alter the mobility of radiolabeled hTPO. Radiolabeled recombinant hTPO was retained by concanavalin A, but not by wheat germ agglutinin, Ricinus communis agglutinin 1, peanut agglutinin and Ulex europaeus lectins. To determine whether or not the glycan moieties in hTPO play a role in the disease-associated epitopes in Hashimoto's thyroiditis, radiolabeled recombinant hTPO was immunoprecipitated after digestion with N-glycanase. Removal of the N-linked carbohydrate chains with endo F and endo H did not prevent antibody binding. In summary, the present data indicate that: i) hTPO expressed in CHO cells contains N-linked, but not O-linked glycan moieties; ii) the N-linked carbohydrate is primarily of the polymannose variety; and, iii) the glycan moieties do not contribute to the hTPO epitopes in Hashimoto's thyroiditis.

Acetylglucosaminidase↗

Heterogeneity of autoantibodies against thyroid peroxidase in autoimmune thyroid disease: evidence against antibodies directly inhibiting peroxidase activity as regulatory factors in thyroid hormone metabolism.

The close relationship between thyroid microsomal antigen and thyroid peroxidase (TPO) is now well established. The present study evaluates the significance of autoantibodies against TPO (anti-TPO-Abs) in the various forms and stages of autoimmune thyroid disease with respect to a possible heterogeneous nature and particularly to their influence on TPO activity. When measured by a RIA using purified human TPO, anti-TPO-Abs were highly correlated with microsomal antibodies determined by enyzme-linked immunosorbant assay (r = 0.96; P less than 0.0001) and with the results of a TPO immunoprecipitation assay using crude microsomal preparations (r = 0.76; P less than 0.001). Relating the results of these assays to the reactivities of patients' sera with thyroid microsomes in immunoblot under nonreducing and reducing conditions, discordant results could be observed in a few cases. Further analysis of these data indicate a heterogeneous nature of anti-TPO-Abs, which react with at least two antigenic domains of the TPO molecule. The comparative analysis of patients with hyperthyroid Graves' disease, patients with Graves' disease in clinical remission, and patients with hypothyroid Hashimoto's thyroiditis revealed no significant differences in the antibody spectrum. When evaluating the direct influence of anti-TPO-Abs on the activity of TPO under a rigorous methodological approach, we found no significant inhibition of the enzymatic activity by any of the sera investigated from patients with autoimmune thyroid disease compared to that in sera from normal controls. In conclusion, the data indicate a heterogeneous nature of anti-TPO-Abs. The spectrum of antigenic epitopes recognized by anti-TPO-Abs seems not to be significantly different in the various forms and stages of autoimmune thyroid disease. The lack of an inhibitory effect of autoantibodies on TPO activity argues against direct binding of autoantibodies to the enzymatic sites of TPO and indicates that they are not important factors in producing thyroid dysfunction in autoimmune thyroid disease.

Adult↗

Recombinant thyroid peroxidase autoantibodies can be used for epitopic "fingerprinting" of thyroid peroxidase autoantibodies in the sera of individual patients.

Four human monoclonal antibodies (SP1.4, WR1.7, TR1.8, and TR1.9) map the immunodominant region on thyroid peroxidase (TPO) recognized by autoantibodies in patients' sera. We used a pool of these monoclonal antibodies, expressed in bacteria as antigen-binding fragments [F(ab)], to compete for TPO autoantibody binding to radiolabeled TPO. The F(ab) inhibited TPO binding by 32 patients' sera by 82 +/- 14% (mean +/- SD), with a range from 51-100%. When each F(ab) was tested individually for its ability to compete for autoantibody binding to TPO, F(ab) TR1.8 was the most potent among the 32 sera. However, there was a wide spectrum of TPO binding inhibition when each serum was considered individually, thereby allowing an epitopic "fingerprint" to be drawn for the TPO autoantibodies in a patient's serum. There was a close association between the proportions of TPO autoantibodies to the TR1.8 and TR1.9 epitopes as well as between those to the SP1.4 and WR1.7 epitopes. These associations correspond to the previously described A and B epitopic domains in the TPO immunodominant region. No TPO epitope was observed to be associated with clinically apparent ophthalmopathy of Graves' disease, nor was there an association between TPO epitopes and patient age or sex. In summary, the present study on a large sample of sera with TPO autoantibodies indicates that by using TPO-specific F(ab) selected to cover all regions of the TPO immunodominant region, it is possible to obtain a TPO epitopic fingerprint for each serum. These data open the way to future studies directed at testing the hypothesis of disease-associated TPO epitope(s).

Autoantibodies↗

The structure of a neural specific carbohydrate epitope of horseradish peroxidase recognized by anti-horseradish peroxidase antiserum.

Antiserum raised against horseradish peroxidase (HRP) recognizes a neural specific carbohydrate antigen in Drosophila and other insects. The epitopic activity of the carbohydrate moiety of HRP recognized by anti-HRP antiserum was measured by a newly developed enzyme-linked immunosorbent assay, in which HRP glycopeptides conjugated with bovine serum albumin were coated onto the wells and then reacted with goat anti-HRP antiserum. HRP sugar moieties released by almond glycopeptidase A digestion of HRP pepsin digests were subjected to pyridylamination. Pyridylamino oligosaccharides were separated into seven fractions by reverse-phase high performance liquid chromatography. The major fraction, which comprised about 80% of the total sugars, reacted strongly with anti-HRP antiserum. The carbohydrate structure of this fraction was determined by sugar composition analysis and 600-MHz 1H NMR spectroscopy as follows: Man alpha 1----6(Man alpha 1----3)(Xyl beta 1----2)Man beta 1----4GlcNAc beta 1----4(Fuc alpha 1----3)GlcNAc. Analyses of reactivity with anti-HRP antiserum of various oligosaccharide derivatives obtained from the major fraction by exoglycosidase digestion and partial acid hydrolysis indicated that alpha 1----6-linked mannose and alpha 1----3-linked fucose are predominantly involved in the epitopic structure.

Carbohydrate Sequence↗

Antihuman plasma glutathione peroxidase antibodies: immunologic investigations to determine plasma glutathione peroxidase protein and selenium content in plasma.

Plasma glutathione peroxidase (GSHPx) (glutathione: H2O2 oxidoreductase) is a unique selenoglycoprotein. Treatment of this enzyme with glycopeptidase F partially deglycosylates it and establishes the presence of N-linked sugar moieties. Antibodies raised in a rabbit against the purified enzyme from plasma were found to be specific, noninhibitory, and capable of precipitating the enzymatic activity. The antibodies precipitated greater than 90% of the GSHPx activity of normal plasma, thus indicating that the selenoenzyme is the main if not the sole GSHPx activity of plasma. The antibodies did not precipitate RBC GSHPx. A slight cross-reactivity of the antibodies was found with rat plasma GSHPx. A GSHPx activity precipitation assay of normal plasma in the presence of selenium (Se)-deficient plasma indicates that no cross-reactive protein in the Se-deficient plasma interferes with the precipitation of the GSHPx activity from normal plasma. Thus, GSHPx protein as well as activity is deficient in plasma in the absence of Se. Antibodies against GSHPx either from RBCs or from plasma were used to specifically immunoprecipitate most of the GSHPx activity from RBCs or plasma, respectively, in healthy individuals to determine the amount of Se associated with the protein. GSHPx accounts for approximately 15% of the Se in RBCs and 12% of the Se in plasma. Thus, in normal individuals, these proteins account for only a fraction of plasma and RBC Se.

Animals↗

Toxoplasma gondii: demonstration of intrinsic peroxidase activity during lacto-peroxidase mediated radioiodination of tachyzoites.

Tachyzoites of Toxoplasma gondii have been radioiodinated under various conditions with or without lactoperoxidase, with glucose oxidase being used to generate hydrogen peroxide. Erythrocytes were iodinated simultaneously as a control. In our conditions, tachyzoites were more intensely labelled in the absence of lactoperoxidase. This result can be explained by the existence of an intrinsic peroxidase activity which interfere with the exogenously added enzyme during surface radioiodination.

Animals↗

Enhanced skin carcinogenesis in transgenic mice with high expression of glutathione peroxidase or both glutathione peroxidase and superoxide dismutase.

Female transgenic mice (C57BL/6 x CBA/J)F1 with a 1-fold increase in expression of glutathione peroxidase (GP) or with a 1-fold increase in the expression of GP and a 3-4-fold increase in the expression of superoxide dismutase (SOD) had an enhanced carcinogenic response to initiation by 7,12-dimethylbenz[a]anthracene (DMBA) followed by promotion with 12-O-tetradecanoylphorbol-13-acetate (TPA). GP- or GP+SOD-transgenic mice that were initiated by a single topical application of 200 nmol of DMBA followed by promotion with 8 nmol of TPA twice weekly for 30 weeks developed an average of 10.9 or 11.0 skin tumors per mouse and a 100% tumor incidence in comparison with the corresponding nontransgenic mice, which had 3.9 tumors per mouse and an 83% tumor incidence. After stopping TPA application, partial skin tumor regression occurred more rapidly in nontransgenic mice than in either type of transgenic mouse. At 10 weeks after termination of TPA treatment, 9-11% of the tumor-bearing transgenic mice and 26% of the tumor-bearing nontransgenic mice had complete regression of their tumors. Histopathological examination of 96 skin papillomas revealed that the area, location, degree of tumor dysplasia, bromodeoxyuridine labeling index, and p53 protein levels were closely intercorrelated. Further analysis indicated that papillomas with the same grade of dysplasia had a higher bromodeoxyuridine labeling index and a greater p53 protein level in GP- or GP+SOD-transgenic mice than those in nontransgenic mice. The data indicated that overexpression of skin antioxidant enzymes GP or GP+SOD, which are enzymes that are believed to protect cells from oxidative damage by scavenging reactive oxygen species, lead to the increased, rather than the decreased, tumorigenesis in a DMBA/TPA two-stage skin carcinogenesis model.

9,10-Dimethyl-1,2-benzanthracene↗

Serological relationships between tobacco necrosis virus-inducible cucumber peroxidase and corresponding peroxidase isoenzymes in other Cucurbitaceae.

Pathogenesis-related peroxidases (PRXs), found in leaves of different cucurbits infected with tobacco necrosis virus (TNV), were compared serologically using a highly specific rabbit antiserum raised against PRX purified from TNV-infected cotyledons of Cucumis sativus L., cv. Laura. After native polyacrylamide gel electrophoresis (PAGE) of intercellular washing fluid extracts from a large number of species of this family, immunoblot analysis revealed the presence of cross-reacting protein bands in all species tested. Despite the serological relatedness, the analysis also revealed that the antiserum recognized only fast-moving PRX isoenzymes localized in the apoplast space.

Animals↗

The use of peroxidase anti-peroxidase (PAP) complexes in the detection of plant viruses by ELISA.

An ELISA test system for detection of plant viruses in field samples is described, based on the unlabelled antibody method using a peroxidase-antiperoxidase (PAP) complex. Novel features of the system include the use of acid-treated naked bacteria as combined carrier-adjuvants for the production of rabbit antiviral antibodies, and the use of acid-treated chicken antibodies (IgY) for antigen trapping in the ELISA. Systems for detection of potato virus Y (PVY), potato leafroll virus (PLRV), grapevine fanleaf virus (GFV) and grapevine virus A (GVA) were developed and compared with conventional direct double antibody sandwich (DAS) systems in tests with both purified virus and field samples. The PAP systems offer improved sensitivity, no background problems in the outer rows of the microtitre plates and are much easier to visualize with the naked eye if no plate reader is available.

Animals↗