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13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens

BACKGROUND: Grass pollen allergy is one of the most common allergies worldwide. Group I allergens constitute the major allergenic component of grass pollen with more than 85% of grass pollen allergic patients showing IgE reactivity. These are highly immunologically cross-reactive glycoproteins speci...

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Autores principales: Bhalla, Prem, Tiwari, Ruby, Singh, Mohan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: World Allergy Organization Journal 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3512950/
http://dx.doi.org/10.1097/01.WOX.0000411758.97906.3c
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author Bhalla, Prem
Tiwari, Ruby
Singh, Mohan
author_facet Bhalla, Prem
Tiwari, Ruby
Singh, Mohan
author_sort Bhalla, Prem
collection PubMed
description BACKGROUND: Grass pollen allergy is one of the most common allergies worldwide. Group I allergens constitute the major allergenic component of grass pollen with more than 85% of grass pollen allergic patients showing IgE reactivity. These are highly immunologically cross-reactive glycoproteins specifically expressed in pollen of all grasses. Alignments of the amino-acid sequences of grass group I allergens derived from diverse grass species reveal up to 95% homology. It is therefore likely that these molecules share a similar biological function. METHODS: RT-PCR analysis, In situ hybridisation, Promoter-GFP construct design, plant transformation and analysis of transgenic plants. RESULTS: Sequence comparison has identified a homologue (β-expansin clone At2g20750 or EXPB1) in Arabidopsis of the Cyn d 1 gene. The EXPB1 protein is 42% similar to the Cyn d 1 protein. This gene represents a member of a small multigene family in Arabidopsis. RT-PCR analysis showed expression only in floral not vegetative tissues. In situ hybridisation using 150 bp region of the 3′ UTR of the Arabidopsis gene as probe showed specific expression in mature Arabidopsis pollen. We further cloned the promoter region for the Arabidopsis EXPB1 and prepared and GFP fusion constructs. These constructs were then introduced in to Arabidopsis plants by floral dip method. GFP-promoter fusions showed high level of expression in tri-cellular pollen. CONCLUSIONS: Our study provides evidence that EXPB1, a non-allergenic homologue of grass group 1 pollen allergens, gene is expressed in mature pollen.
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spelling pubmed-35129502012-12-21 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens Bhalla, Prem Tiwari, Ruby Singh, Mohan World Allergy Organ J Abstracts of the XXII World Allergy Congress BACKGROUND: Grass pollen allergy is one of the most common allergies worldwide. Group I allergens constitute the major allergenic component of grass pollen with more than 85% of grass pollen allergic patients showing IgE reactivity. These are highly immunologically cross-reactive glycoproteins specifically expressed in pollen of all grasses. Alignments of the amino-acid sequences of grass group I allergens derived from diverse grass species reveal up to 95% homology. It is therefore likely that these molecules share a similar biological function. METHODS: RT-PCR analysis, In situ hybridisation, Promoter-GFP construct design, plant transformation and analysis of transgenic plants. RESULTS: Sequence comparison has identified a homologue (β-expansin clone At2g20750 or EXPB1) in Arabidopsis of the Cyn d 1 gene. The EXPB1 protein is 42% similar to the Cyn d 1 protein. This gene represents a member of a small multigene family in Arabidopsis. RT-PCR analysis showed expression only in floral not vegetative tissues. In situ hybridisation using 150 bp region of the 3′ UTR of the Arabidopsis gene as probe showed specific expression in mature Arabidopsis pollen. We further cloned the promoter region for the Arabidopsis EXPB1 and prepared and GFP fusion constructs. These constructs were then introduced in to Arabidopsis plants by floral dip method. GFP-promoter fusions showed high level of expression in tri-cellular pollen. CONCLUSIONS: Our study provides evidence that EXPB1, a non-allergenic homologue of grass group 1 pollen allergens, gene is expressed in mature pollen. World Allergy Organization Journal 2012-02-17 /pmc/articles/PMC3512950/ http://dx.doi.org/10.1097/01.WOX.0000411758.97906.3c Text en Copyright © 2012 by World Allergy Organization
spellingShingle Abstracts of the XXII World Allergy Congress
Bhalla, Prem
Tiwari, Ruby
Singh, Mohan
13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title_full 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title_fullStr 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title_full_unstemmed 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title_short 13 Gene Expression Pattern of Arabidopsis EXPB1, a Nonallergenic Homologue of Grass Group 1 Pollen Allergens
title_sort 13 gene expression pattern of arabidopsis expb1, a nonallergenic homologue of grass group 1 pollen allergens
topic Abstracts of the XXII World Allergy Congress
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3512950/
http://dx.doi.org/10.1097/01.WOX.0000411758.97906.3c
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