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Updated: May 31, 2026

Synthesizing Amino Acids Modified with Reactive Carbonyls in Silico to Assess Structural Effects Using Molecular Dynamics Simulations
Published on: April 26, 2024
Novel insights into the binding mechanisms of selected aldehydes during heat-induced protein unfolding
Jingfan Wang1,2,3, Tianze Wang1, Ping Yang1
1Key Laboratory of Agro-Products Processing, Ministry of Agriculture and Rural Affairs, Institute of Food Science and Technology, Chinese Academy of Agricultural Sciences, Beijing, China.
Abstract:
This investigation aimed to clarify the binding mechanisms between six aldehydes and myofibrillar proteins (MPs), with a structural explanation in response to stage-heating treatments. The conformational intermediates of MPs, which form during heat processing, were systematically characterized to elucidate their role in aldehyde binding and flavor retention. Machine learning results suggested that high-temperature boiling promoted extensive protein denaturation and aggregation, while subsequent low-temperature stewing induced partial rearrangement. Thermodynamic parameters indicated that hexanal-MPs formation was primarily driven by hydrogen bonding, whereas other longer-chain and unsaturated aldehydes penetrated hydrophobic pockets. Proteomics revealed that saturated aldehydes predominantly formed Schiff bases with the lysine ε-amino group. Unsaturated aldehydes, especially (E, E)-2,4-decadienal, undergo both Schiff base reactions and Michael addition with cysteine, histidine, and tryptophan residues. The retention/release behavior of aldehydes during processing is determined by covalent and non-covalent interactions. These results provide a scientific basis for precisely controlling flavor quality in meat products.
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