Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993
Authors
Đukić, Teodora
Smiljanić, Katarina

Mihailović, Jelena
Prodić, Ivana

Apostolović, Danijela

Liu, Shu-Hua
Epstein, Michelle M.
van Hage, Marianne

Stanić-Vučinić, Dragana

Ćirković-Veličković, Tanja

Dataset (Published version)
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Post-translational modifications (PTMs) are covalent changes occurring on amino acid side chains of proteins and yet are neglected structural and functional aspects of protein architecture. The objective was to detect differences in PTM profiles that take place after roasting using open PTM search. We conducted a bottom-up proteomic study to investigate the impact of peanut roasting on readily soluble allergens and their PTM profiles. Proteomic PTM profiling of certain modifications was confirmed by Western blotting with a series of PTM-specific antibodies. In addition to inducing protein aggregation and denaturation, roasting may facilitate change in their PTM pattern and relative profiling. We have shown that Ara h 1 is the most modified major allergen in both samples in terms of modification versatility and extent. The most frequent PTM was methionine oxidation, especially in roasted samples. PTMs uniquely found in roasted samples were hydroxylation (Trp), formylation (Arg/Lys), and... oxidation or hydroxylation (Asn). Raw and roasted peanut extracts did not differ in the binding of IgE from the serum of peanut-sensitised individuals done by ELISA. This study provides a better understanding of how roasting impacts the PTM profile of major peanut allergens and provides a good foundation for further exploration of PTMs.
Keywords:
peanut allergen profiling / roasting / allergy / shotgun proteomics / high resolution mass spectrometry (HRMS) / post-translational modifications / PTM profiling / Western blotSource:
Foods, 2022, 11, 24, -3993Publisher:
- MDPI
Funding / projects:
- Belgian Special Research Fund BOF [StG No: 01N01718]
- Serbian Academy of Sciences and Arts [GA No. F-26]
- Ministry of Education, Science and Technological Development, Republic of Serbia, Grant no. 200168 (University of Belgrade, Faculty of Chemistry) (RS-200168)
- FoodEnTwin-Twinning of research activities for the frontier research in the fields of food, nutrition and environmental omics (EU-810752)
Note:
- Supplementary material for: https://doi.org/10.3390/foods11243993
- Related to published version: https://cherry.chem.bg.ac.rs/handle/123456789/5702
Related info:
- Referenced by
https://doi.org/10.3390/foods11243993 - Referenced by
https://cherry.chem.bg.ac.rs/handle/123456789/5702
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Hemijski fakultetTY - DATA AU - Đukić, Teodora AU - Smiljanić, Katarina AU - Mihailović, Jelena AU - Prodić, Ivana AU - Apostolović, Danijela AU - Liu, Shu-Hua AU - Epstein, Michelle M. AU - van Hage, Marianne AU - Stanić-Vučinić, Dragana AU - Ćirković-Veličković, Tanja PY - 2022 UR - http://cherry.chem.bg.ac.rs/handle/123456789/5708 AB - Post-translational modifications (PTMs) are covalent changes occurring on amino acid side chains of proteins and yet are neglected structural and functional aspects of protein architecture. The objective was to detect differences in PTM profiles that take place after roasting using open PTM search. We conducted a bottom-up proteomic study to investigate the impact of peanut roasting on readily soluble allergens and their PTM profiles. Proteomic PTM profiling of certain modifications was confirmed by Western blotting with a series of PTM-specific antibodies. In addition to inducing protein aggregation and denaturation, roasting may facilitate change in their PTM pattern and relative profiling. We have shown that Ara h 1 is the most modified major allergen in both samples in terms of modification versatility and extent. The most frequent PTM was methionine oxidation, especially in roasted samples. PTMs uniquely found in roasted samples were hydroxylation (Trp), formylation (Arg/Lys), and oxidation or hydroxylation (Asn). Raw and roasted peanut extracts did not differ in the binding of IgE from the serum of peanut-sensitised individuals done by ELISA. This study provides a better understanding of how roasting impacts the PTM profile of major peanut allergens and provides a good foundation for further exploration of PTMs. PB - MDPI T2 - Foods T1 - Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993 VL - 11 IS - 24 EP - 3993 UR - https://hdl.handle.net/21.15107/rcub_cherry_5708 ER -
@misc{ author = "Đukić, Teodora and Smiljanić, Katarina and Mihailović, Jelena and Prodić, Ivana and Apostolović, Danijela and Liu, Shu-Hua and Epstein, Michelle M. and van Hage, Marianne and Stanić-Vučinić, Dragana and Ćirković-Veličković, Tanja", year = "2022", abstract = "Post-translational modifications (PTMs) are covalent changes occurring on amino acid side chains of proteins and yet are neglected structural and functional aspects of protein architecture. The objective was to detect differences in PTM profiles that take place after roasting using open PTM search. We conducted a bottom-up proteomic study to investigate the impact of peanut roasting on readily soluble allergens and their PTM profiles. Proteomic PTM profiling of certain modifications was confirmed by Western blotting with a series of PTM-specific antibodies. In addition to inducing protein aggregation and denaturation, roasting may facilitate change in their PTM pattern and relative profiling. We have shown that Ara h 1 is the most modified major allergen in both samples in terms of modification versatility and extent. The most frequent PTM was methionine oxidation, especially in roasted samples. PTMs uniquely found in roasted samples were hydroxylation (Trp), formylation (Arg/Lys), and oxidation or hydroxylation (Asn). Raw and roasted peanut extracts did not differ in the binding of IgE from the serum of peanut-sensitised individuals done by ELISA. This study provides a better understanding of how roasting impacts the PTM profile of major peanut allergens and provides a good foundation for further exploration of PTMs.", publisher = "MDPI", journal = "Foods", title = "Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993", volume = "11", number = "24", pages = "3993", url = "https://hdl.handle.net/21.15107/rcub_cherry_5708" }
Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S., Epstein, M. M., van Hage, M., Stanić-Vučinić, D.,& Ćirković-Veličković, T.. (2022). Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993. in Foods MDPI., 11(24). https://hdl.handle.net/21.15107/rcub_cherry_5708
Đukić T, Smiljanić K, Mihailović J, Prodić I, Apostolović D, Liu S, Epstein MM, van Hage M, Stanić-Vučinić D, Ćirković-Veličković T. Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993. in Foods. 2022;11(24):null-3993. https://hdl.handle.net/21.15107/rcub_cherry_5708 .
Đukić, Teodora, Smiljanić, Katarina, Mihailović, Jelena, Prodić, Ivana, Apostolović, Danijela, Liu, Shu-Hua, Epstein, Michelle M., van Hage, Marianne, Stanić-Vučinić, Dragana, Ćirković-Veličković, Tanja, "Supplementary for: Đukić, T., Smiljanić, K., Mihailović, J., Prodić, I., Apostolović, D., Liu, S.-H., Epstein, M. M., van Hage, M., Stanić-Vučinić, D., & Ćirković Veličković, T. (2022). Proteomic Profiling of Major Peanut Allergens and Their Post-Translational Modifications Affected by Roasting. Foods, 11(24). https://doi.org/10.3390/foods11243993" in Foods, 11, no. 24 (2022), https://hdl.handle.net/21.15107/rcub_cherry_5708 .