Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1
Background: Hypersensitivity to the group 1 grass pollen allergens is a significant causative factor in the onset of symptoms for hay fever sufferers. To better understand the IgE reactivity of the group 1 allergen from rye grass pollen, we sought to disrupt potential conformational IgE epitopes on...
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doaj-fdeebc78f7ab40fcaf54a9d1bba2b8f92020-11-24T22:28:23ZengElsevierAllergology International1323-89302003-01-0152418319010.1046/j.1323-8930.2003.00300.xEffect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1Nicole de WeerdPrem L. BhallaMohan B. SinghBackground: Hypersensitivity to the group 1 grass pollen allergens is a significant causative factor in the onset of symptoms for hay fever sufferers. To better understand the IgE reactivity of the group 1 allergen from rye grass pollen, we sought to disrupt potential conformational IgE epitopes on recombinant (r) Lol p 1 by the specific replacement of the seven cysteine residues in the protein sequence. Methods: Site-directed mutagenesis on the Lol p 1 coding sequence was used to replace all seven cysteine residues with serine residues. rLol p 1 and the seven cysteine variants generated by this method were tested for comparative human IgE reactivity via western blot immunoscreening and densitometry. Results: Alteration of the cysteine residues at amino acid positions 72, 77, 83 and 139 of rLol p 1 was found to reduce the human IgE binding potential of the molecule. However, the most consistent reduction in human IgE reactivity was demonstrated by replacement of C77; human IgE antibodies showed an average 62.7% reduction in reactivity to this molecule. Conclusions: The present investigation has shown that at least one of the cysteine residues within the Lol p 1 protein contributes to the IgE binding properties of this allergen.http://www.sciencedirect.com/science/article/pii/S1323893015311655allergygrass pollenLol p 1mutage- nesisrye grass |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nicole de Weerd Prem L. Bhalla Mohan B. Singh |
spellingShingle |
Nicole de Weerd Prem L. Bhalla Mohan B. Singh Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 Allergology International allergy grass pollen Lol p 1 mutage- nesis rye grass |
author_facet |
Nicole de Weerd Prem L. Bhalla Mohan B. Singh |
author_sort |
Nicole de Weerd |
title |
Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 |
title_short |
Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 |
title_full |
Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 |
title_fullStr |
Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 |
title_full_unstemmed |
Effect of cysteine mutagenesis on human IgE reactivity of recombinant forms of the major rye grass pollen allergen Lol p 1 |
title_sort |
effect of cysteine mutagenesis on human ige reactivity of recombinant forms of the major rye grass pollen allergen lol p 1 |
publisher |
Elsevier |
series |
Allergology International |
issn |
1323-8930 |
publishDate |
2003-01-01 |
description |
Background: Hypersensitivity to the group 1 grass pollen allergens is a significant causative factor in the onset of symptoms for hay fever sufferers. To better understand the IgE reactivity of the group 1 allergen from rye grass pollen, we sought to disrupt potential conformational IgE epitopes on recombinant (r) Lol p 1 by the specific replacement of the seven cysteine residues in the protein sequence.
Methods: Site-directed mutagenesis on the Lol p 1 coding sequence was used to replace all seven cysteine residues with serine residues. rLol p 1 and the seven cysteine variants generated by this method were tested for comparative human IgE reactivity via western blot immunoscreening and densitometry.
Results: Alteration of the cysteine residues at amino acid positions 72, 77, 83 and 139 of rLol p 1 was found to reduce the human IgE binding potential of the molecule. However, the most consistent reduction in human IgE reactivity was demonstrated by replacement of C77; human IgE antibodies showed an average 62.7% reduction in reactivity to this molecule.
Conclusions: The present investigation has shown that at least one of the cysteine residues within the Lol p 1 protein contributes to the IgE binding properties of this allergen. |
topic |
allergy grass pollen Lol p 1 mutage- nesis rye grass |
url |
http://www.sciencedirect.com/science/article/pii/S1323893015311655 |
work_keys_str_mv |
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