Molecular and immunological characterization and IgE epitope mapping of Pen n 18, a major allergen of Penicillium notatum

Author:

YU Chia-Jung1,CHEN Yen-Ming1,SU Song-Nan2,FOROUHAR Farhad3,LEE Shu-Hua1,CHOW Lu-Ping14

Affiliation:

1. Institute of Biochemistry & Molecular Biology, College of Medicine, National Taiwan University, No. 1, Jen-Ai Road, Taipei, Taiwan

2. Department of Medical Research, Veterans General Hospital, Taipei, Taiwan

3. Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan

4. Department of Medical Genetics, National Taiwan University Hospital, Taipei, Taiwan

Abstract

The mould genus, Penicillium, is a significant source of environmental aero-allergens. A major allergen from Penicillium notatum, Pen n 18, was identified by two-dimensional immunoblotting using monoclonal antibody G11A10, raised against the vacuolar serine protease of Penicillium citrinum, followed by matrix-assisted laser-desorption ionization—time-of-flight MS analysis of the peptide digest. Pen n 18 was then cloned and the amino acid sequence deduced from the cDNA sequence. The cDNA encoded a 494 amino acid protein, considerably larger than mature Pen n 18, the differences being due to the N- and C-terminal prosequences. The deduced amino acid sequence showed extensive similarity with those of vacuolar serine proteases from various fungi. The Pen n 18 coding sequence was expressed in Escherichia coli as a His-tagged fusion protein and purified by Ni2+-chelate affinity chromatography. On immunoblots, the purified recombinant protein specifically bound IgE from mould-allergic patients, and cross-inhibition assays demonstrated the presence of common IgE-binding epitopes on Pen n 18 and a major allergen of P. citrinum, Pen c 18. When mapping of the allergenic epitopes was performed, at least nine different linear IgE-binding epitopes, located throughout the Pen n 18 protein, were identified. Of these, peptide C12, located in the N-terminal region of the molecule, was recognized by serum from 75% of the patients tested and therefore appears to be an immunodominant IgE-binding epitope.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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