Chen Xu, Wu Jinhong, Li Xiaozhen, Yang Fujia, Huang Dan, Huang Jianlian, Wang Shaoyun, Guyonnet Vincent
College of Biological Science and Engineering, Fuzhou University, 350108, Fuzhou, Fujian, China.
College of Chemical Engineering, Fuzhou University, 350108, Fuzhou, Fujian, China.
NPJ Sci Food. 2022 Feb 3;6(1):10. doi: 10.1038/s41538-022-00128-4.
Cryogenic machining is one of the most commonly used techniques for processing and preserving in food industry, and traditional antifreeze agents cannot regulate the mechanical stress damage caused by ice crystals formed during recrystallization or thawing. In this study, we successfully developed an express system of a novel recombinant snow flea antifreeze peptide (rsfAFP), which has significant ice recrystallization inhibition ability, thermal hysteresis activity and alters ice nucleation, thus regulating extracellular ice crystal morphology and recrystallization. We showed that rsfAFP improved the survival rate, acid-producing ability, freezing stability, and cellular metabolism activity of Streptococcus thermophilus. We further showed that rsfAFP interacts with the membrane and ice crystals to cover the outer layer of cells, forming a dense protective layer that maintains the physiological functions of S. thermophilus under freezing stress. These findings provide the scientific basis for using rsfAFP as an effective antifreeze agent for lactic acid bacteria cryopreservation or other frozen food.
低温加工是食品工业中最常用的加工和保存技术之一,而传统的抗冻剂无法调节重结晶或解冻过程中形成的冰晶所造成的机械应力损伤。在本研究中,我们成功开发了一种新型重组雪蚤抗冻肽(rsfAFP)的表达系统,该抗冻肽具有显著的抑制冰重结晶能力、热滞活性并改变冰核形成,从而调节细胞外冰晶形态和重结晶。我们发现rsfAFP提高了嗜热链球菌的存活率、产酸能力、冷冻稳定性和细胞代谢活性。我们进一步发现,rsfAFP与细胞膜和冰晶相互作用,覆盖细胞外层,形成致密的保护层,在冷冻胁迫下维持嗜热链球菌的生理功能。这些发现为将rsfAFP用作乳酸菌冷冻保存或其他冷冻食品的有效抗冻剂提供了科学依据。