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Butyrate-Dependent Conformational Switch Promotes Nuclear Translocation of the Mustard Allergen Sin a 1 in Human Gut Epithelial Cells.

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2026

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Butyrate-Dependent Conformational Switch Promotes Nuclear Translocation of the Mustard Allergen Sin a 1 in Human Gut Epithelial Cells. Rubén G. Gordo, Jorge Parrón-Ballesteros, Nieves Olmo, Mayte Villalba, Eva Batanero, and Javier Turnay Journal of Agricultural and Food Chemistry 2026 74 (24), 19053-19065 DOI: 10.1021/acs.jafc.6c01248

Abstract

Sin a 1, the major allergen from mustard seeds, is a highly stable 2S albumin capable of reaching the intestinal epithelium in its intact form. In this study, we investigated whether butyrate, a microbiota-derived short-chain fatty acid, directly interacts with Sin a 1 and modulates its cellular behavior in Caco-2 cells. Circular dichroism analyses revealed that short-chain fatty acids induce conformational changes in Sin a 1. However, fluorescence spectroscopy showed that only butyrate modified the tertiary structure of the light chain, exposing a putative nuclear localization signal and thereby promoting the importin-dependent nuclear translocation of the allergen. In the absence of butyrate, Sin a 1 remained predominantly in the cytoplasm. In addition, butyrate altered NFKB1 transcriptional responses in Sin a 1-treated cells. Our findings reveal an effect of butyrate on the intracellular trafficking of allergens that had not previously been described, suggesting a novel mechanism by which microbiota-derived metabolites may influence food allergenicity.

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Funding: This work was supported by grant PID2020-116692RBI00 from the Spanish Ministry of Science, Innovation and Universities (MICIU/AEI/10.13039/501100011033), and cofounded by the European Regional Development Fund.Rubeń G. Gordo and Jorge Parron-Ballesteros ́ acknowledge predoctoral UCM-Santander grants (CT15/23 and CT58/21, respectively).

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