College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.
College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.
Ultrason Sonochem. 2022 Sep;89:106140. doi: 10.1016/j.ultsonch.2022.106140. Epub 2022 Aug 27.
The poor water solubility of myofibrillar proteins (MPs) limits their application in food industry, and is directly related to the molecular behavior associated with myosin assembly into filaments. This study aims to explore the effect of high-intensity ultrasound (HIU) combined with nonenzymatic glycation on the solubility, structural characteristics, and filament-forming behavior of MPs in low ionic strength media. The results showed that the HIU (200-400 W) application could promote the subsequent glycation reaction between MPs and dextran (DX) and interfere with the electrostatic balance between myosin rods, suppressing the formation of filamentous myosin polymers. Glycated MPs pretreated by 400 W HIU had the highest solubility, which corresponded to the smallest particle size, highest zeta potential, and optimum storage stability (P < 0.05). Structure analysis and microscopic morphology observations suggested that the loss of the MP superhelix and the depolymerization of filamentous polymers were the main mechanisms for MP solubilization. In conclusion, HIU combined with glycation can effectively improve the water solubility of MPs by destroying or suppressing the assembly of myosin molecules.
肌球蛋白(MPs)的低水溶性限制了其在食品工业中的应用,这与肌球蛋白组装成纤维丝的分子行为直接相关。本研究旨在探索高强度超声(HIU)与非酶糖基化联合作用对低离子强度介质中 MPs 的溶解度、结构特性和纤维丝形成行为的影响。结果表明,HIU(200-400 W)的应用可以促进 MPs 与葡聚糖(DX)之间随后的糖基化反应,并干扰肌球蛋白棒之间的静电平衡,抑制纤维状肌球蛋白聚合物的形成。经 400 W HIU 预处理的糖基化 MPs 具有最高的溶解度,这与最小的粒径、最高的 Zeta 电位和最佳的储存稳定性相对应(P < 0.05)。结构分析和微观形貌观察表明,MP 超螺旋的丧失和纤维状聚合物的解聚是 MPs 增溶的主要机制。总之,HIU 与糖基化结合可以通过破坏或抑制肌球蛋白分子的组装来有效提高 MPs 的水溶性。