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PMID: 17177799 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Design of tomato fruits with reduced allergenicity by dsRNAi-mediated inhibition of ns-LTP (Lyc e 3) expression.

Plant biotechnology journal ·Vol. 4 ·No. 2 ·2006-03-00 ·Pages 231-42

Le LQ, Lorenz Y, Scheurer S, Fötisch K, Enrique E, Bartra J, Biemelt S, Vieths S, Sonnewald U

Abstract

Plant genetic engineering has the potential to introduce new allergenic proteins into foods but, at the same time, it can be used to remove established allergens. Here, we report the molecular characterization of Lyc e 3, a new tomato (Lycopersicon esculentum) allergen, and the efficient down-regulation of its expression in transgenic tomato plants. Following the identification of an immunoglobulin E (IgE)-binding 9-kDa polypeptide in tomato peel, designated Lyc e 3, its partial amino acid sequence was determined by N-terminal protein sequencing. Sequence comparison revealed that Lyc e 3 encodes a nonspecific lipid transfer protein (ns-LTP). In plants, ns-LTPs are encoded by large gene families which differ in primary amino acid sequence, expression and proposed cellular function. To identify Lyc e 3 encoding complementary DNAs (cDNAs), public tomato expressed sequence tag (EST) databases were screened for ns-LTP sequences. Following this strategy, two cDNAs, LTPG1 and LTPG2, with high homology to the N-terminal sequence of Lyc e 3, were identified. Ectopic expression of LTPG1 and LTPG2 in Escherichia coli, followed by immunoblotting, verified their IgE reactivity. Subsequently, transgenic tomato plants constitutively expressing LTPG1- or LTPG2-specific double-stranded RNA interference (dsRNAi) constructs were created and tested for the suppression of Lyc e 3 accumulation. Efficient silencing of Lyc e 3 was documented by Northern and Western blotting. In both cases, Lyc e 3 accumulation was decreased to levels below the detection limit (less than 0.5% of the wild-type protein). The allergenic potential of Lyc e 3-deficient tomato fruits was tested by measuring histamine release from sensitized human basophils stimulated with transgenic and parental lines. These assays revealed a strong (10- to 100-fold) decrease in histamine release of human basophils challenged with transgenic fruit extracts when compared with control extracts. These results demonstrate the feasibility of creating low allergenic tomato fruits by means of dsRNAi inhibition.

MeSH Terms
Allergens/chemistry,genetics,immunology Amino Acid Sequence Antigens, Plant/chemistry,genetics,immunology Basophils/drug effects,metabolism Carrier Proteins/chemistry,genetics,immunology Cells, Cultured Down-Regulation Escherichia coli/genetics Expressed Sequence Tags Fruit/genetics,metabolism Histamine/metabolism Humans Immunoblotting Immunoglobulin E/metabolism Lycopersicon esculentum/genetics,immunology Molecular Sequence Data Plant Extracts/pharmacology Plant Proteins/chemistry,genetics,immunology Plants, Genetically Modified/genetics,immunology,metabolism Protein Engineering RNA Interference RNA, Double-Stranded/pharmacology Sequence Alignment
Chemicals
Allergens Antigens, Plant Carrier Proteins Plant Extracts Plant Proteins RNA, Double-Stranded lipid transfer proteins, plant Immunoglobulin E Histamine
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Le Lien Quynh
Institut für Pflanzengenetik and Kulturpflanzenforschung Gatersleben, Corrensstrasse 3, 06466 Gatersleben, Germany.
Lorenz Yvonne
Scheurer Stephan
Fötisch Kay
Enrique Ernesto
Bartra Joan
Biemelt Sophia
Vieths Stefan
Sonnewald Uwe
Article Info
Journal
Plant biotechnology journal
Abbr.
Plant Biotechnol J
ISSN
1467-7652
Published
2006-03-00
Pages
231-42
Language
English
Region
England
NLM ID
101201889
Subset
IM
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