School of Food Science and Technology, Dalian Polytechnic University, Dalian 116034, PR China.
School of Food Science and Technology, Dalian Polytechnic University, Dalian 116034, PR China; National Engineering Research Center of Seafood, Dalian 116034, PR China; Collaborative Innovation Center of Seafood Deep Processing, Dalian 116034, PR China.
Int J Biol Macromol. 2023 Dec 31;253(Pt 2):126508. doi: 10.1016/j.ijbiomac.2023.126508. Epub 2023 Aug 25.
Studying the noncovalent interactions between proteins and polysaccharides is quite important mainly due to the wide number of applications such as developing pH-responsive complexes. Scallop Patinopecten yessoensis male gonad hydrolysates‑sodium alginate (SMGHs-SA) was investigated as noncovalent complexes at pH from 1 to 10. The critical pH values pH (around 6) and pHφ (around 4) were independent of the SMGHs-SA ratio, indicating the formation of soluble and insoluble complexes. The pH response of SMGHs-SA complexes was evaluated by investigating the rheological behavior, moisture distribution, functional group change and microstructure. Compared to the co-soluble and soluble complexes phases, the SMGHs-SA complexes had a higher storage modulus and viscosity as well as a lower relaxation time (T) in the insoluble complexes phase (pHφ>3). Additionally, the amide I band and COO stretching vibration peaks were redshifted and the amide A band vibration peaks were blueshifted by acidification. Electrostatic interactions and intermolecular/intramolecular hydrogen bonding led to SMGHs-SA agglomeration at pH 3, forming a uniform and dense gel network structure with strong gel strength and water-retention capacity. This study provides a theoretical and methodological basis for the design of novel pH-responsive complexes by studying SMGHs-SA complex coacervation.
研究蛋白质和多糖之间的非共价相互作用非常重要,主要是因为其具有广泛的应用,如开发 pH 响应性复合物。本研究以 pH 值 1 至 10 范围内的扇贝(Patinopecten yessoensis)雄生殖腺水解物-海藻酸钠(SMGHs-SA)非共价复合物为研究对象。临界 pH 值 pH(约 6)和 pHφ(约 4)与 SMGHs-SA 比例无关,表明形成了可溶和不可溶复合物。通过研究流变行为、水分分布、官能团变化和微观结构来评估 SMGHs-SA 复合物的 pH 响应性。与共溶和可溶复合物相相比,在不可溶复合物相(pHφ>3)中,SMGHs-SA 复合物具有更高的储能模量和粘度以及更低的弛豫时间(T)。此外,酰胺 I 带和 COO 伸缩振动峰发生红移,酰胺 A 带振动峰发生蓝移。在 pH 3 时,静电相互作用和分子间/分子内氢键导致 SMGHs-SA 聚集,形成具有强凝胶强度和保水能力的均匀致密凝胶网络结构。本研究通过研究 SMGHs-SA 复合凝聚,为设计新型 pH 响应性复合物提供了理论和方法学基础。