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Van de Voorde, I.

Publications and source records attributed to Van de Voorde, I..

2 recordsLinked to original sources

Influence of transglutaminase mediated crosslinking on the structure-function-digestion properties of Lupinus angustifolius protein evaluated using a multiscale approach

This study presents a multidisciplinary approach to evaluate the structure formation and digestion of lupin protein crosslinked with transglutaminase (TG). TG was applied at 0-10 U/g protein, and structural development was assessed by oscillatory rheology (G, G"), while SDS-PAGE and o-phthaldialdehyde (OPA) assays were used to evaluate protein participation and the reduction of free {varepsilon}-amino groups, respectively. Proteomics was further employed to characterise molecular features associated with crosslinking behaviour. Lupin protein showed a clear dose-dependent increase in gel strength during incubation, with G values reaching 214 {+/-} 43.9 Pa at 10 U/g TG, compared to 7.2 {+/-} 0.6 Pa in the untreated control. Across all conditions, G remained higher than G" throughout frequency sweeps, and low tan {delta} values confirmed the formation of elastic networks driven by covalent crosslinks. SDS-PAGE and OPA results consistently demonstrated efficient crosslink formation, which increased with both incubation time and TG dosage, with SDS-PAGE indicating involvement of specific protein fractions. Proteomic analysis revealed disordered structural domains in the protein are preferred regions to form crosslinks. Furthermore, TG treatment was found to slow the digestibility of the crosslinked lupin protein. Overall, this work demonstrates how integrating proteomic insights with functional measurements can guide the selection and optimisation of plant proteins for enzymatic structuring. The approach offers a rational pathway to enhance the functionality of alternative protein sources such as lupin, supporting the development of sustainable food systems, including applications in meat and dairy analogues.

bioengineering↗

Transglutaminase mediated crosslinking of pea protein: from rheology to proteomics

Enzymatic crosslinking of pea proteins by transglutaminase (TG) is a promising processing strategy to enhance structure in protein-based systems. Despite its widespread application, detailed insights spanning macro- to molecular-level mechanisms remain limited. This study investigates TG-mediated crosslinking of pea protein by integrating rheological, chemical, and proteomic analyses to establish a comprehensive structure-function relationship. Dispersions of 10% w/v pea protein were treated sing TG dosages of 0-10 U/g protein. Rheological measurements showed a significant increase in storage modulus (G') and altered gelation dynamics, with a clear dose-dependent relationship, indicating enhanced network formation. The content of free primary amino groups, quantified using the o-phthalaldehyde (OPA) method, decreased with higher TG levels, confirming progressive covalent crosslinking. SDS-PAGE further revealed differential participation of pea protein fractions in the crosslinking reaction. To elucidate molecular changes, proteomic profiling via LC-MS/MS was performed. The analysis indicated that glutamine and lysine residues located near glutamic acid or within disordered regions of peptides were preferentially crosslinked. Specific TG-catalyzed adducts were also identified and found to be enriched in disordered protein regions. Together, the findings demonstrate a clear mechanistic link between enzymatic crosslinking at the peptide level and functional alterations in network structure and viscoelastic properties. This integrative approach offers a molecular framework for the rational design of protein-based systems with tuneable mechanical properties, supporting innovation in both plant-based and conventional food applications.

molecular biology↗