Literature DB >> 15128842

Molecular characterization of polygalacturonases as grass pollen-specific marker allergens: expulsion from pollen via submicronic respirable particles.

Ines Swoboda1, Monika Grote, Petra Verdino, Walter Keller, Mohan B Singh, Nicole De Weerd, Wolfgang R Sperr, Peter Valent, Nadja Balic, Rudolf Reichelt, Roland Suck, Helmut Fiebig, Rudolf Valenta, Susanne Spitzauer.   

Abstract

Grass pollen belong to the most important allergen sources involved in the elicitation of allergic asthma. We have isolated cDNAs coding for Bermuda grass (Cynodon dactylon) and timothy grass (Phleum pratense) pollen allergens, belonging to a family of pectin-degrading enzymes (i.e., polygalacturonases). The corresponding allergens, termed Cyn d 13 and Phl p 13, represent glycoproteins of approximately 42 kDa and isoelectric points of 7.5. rPhl p 13 was expressed in Escherichia coli and purified to homogeneity. Immunogold electron microscopy using rabbit anti-rPhl p 13 Abs demonstrated that in dry pollen group 13, allergens represent primarily intracellular proteins, whereas exposure of pollen to rainwater caused a massive release of cytoplasmic material containing submicronic particles of respirable size, which were coated with group 13 allergens. The latter may explain respiratory sensitization to group 13 allergens and represents a possible pathomechanism in the induction of asthma attacks after heavy rainfalls. rPhl p 13 was recognized by 36% of grass pollen allergic patients, showed IgE binding capacity comparable to natural Phl p 13, and induced specific and dose-dependent basophil histamine release. Epitope mapping studies localized major IgE epitopes to the C terminus of the molecule outside the highly conserved functional polygalacturonase domains. The latter result explains why rPhl p 13 contains grass pollen-specific IgE epitopes and may be used to diagnose genuine sensitization to grass pollen. Our finding that rabbit anti-rPhl p 13 Abs blocked patients' IgE binding to the allergen suggests that rPhl p 13 may be used for immunotherapy of sensitized patients.

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Year:  2004        PMID: 15128842     DOI: 10.4049/jimmunol.172.10.6490

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  7 in total

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Review 2.  Structural characterization of pollen allergens.

Authors:  Petra Verdino
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3.  Pollen lipidomics: lipid profiling exposes a notable diversity in 22 allergenic pollen and potential biomarkers of the allergic immune response.

Authors:  Mohamed Elfatih H Bashir; Jan Hsi Lui; Ravishankar Palnivelu; Robert M Naclerio; Daphne Preuss
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4.  Ligustrum pollen: New insights into allergic disease.

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5.  Determination of allergen specificity by heavy chains in grass pollen allergen-specific IgE antibodies.

Authors:  Elisabeth Gadermaier; Sabine Flicker; Christian Lupinek; Peter Steinberger; Rudolf Valenta
Journal:  J Allergy Clin Immunol       Date:  2012-11-30       Impact factor: 10.793

Review 6.  Multiple grass mixes as opposed to single grasses for allergen immunotherapy in allergic rhinitis.

Authors:  K Gangl; V Niederberger; R Valenta
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7.  Cari p 1, a Novel Polygalacturonase Allergen From Papaya Acting as Respiratory and Food Sensitizer.

Authors:  Moumita B Sarkar; Gaurab Sircar; Nandini Ghosh; Abhishek K Das; Kuladip Jana; Angira Dasgupta; Swati G Bhattacharya
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  7 in total

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