食品科学 ›› 2026, Vol. 47 ›› Issue (15): 65-73.doi: 10.7506/spkx1002-6630-20260112-100

• 食品化学 • 上一篇    下一篇

不同极限pH值牛肉肌浆蛋白结构性质和理化特性的差异

张蕾,左惠心,毛衍伟,梁荣蓉,王梦雪,韩永胜,肖阳,张一敏   

  1. (1.山东农业大学食品科学与工程学院,山东?泰安 271018;2.山东省畜产品质量安全监控与新兽药创制重点实验室,山东?泰安 271018;3.黑龙江省农业科学院畜牧兽医分院,黑龙江?齐齐哈尔 150086;4.国家肉牛牦牛产业技术体系保定综合试验站,河北?保定 072650)
  • 出版日期:2026-08-15 发布日期:2026-08-24
  • 基金资助:
    泰山学者资助项目(tsqn202312149);国家现代农业(肉牛牦牛)产业技术体系建设专项(CRAS-37)

Structural Properties and Physicochemical Characteristics of Sarcoplasmic Proteins from Beef with Different Ultimate pH

ZHANG Lei, ZUO Huixin, MAO Yanwei, LIANG Rongrong, WANG Mengxue, HAN Yongsheng, XIAO Yang, ZHANG Yimin   

  1. (1. College of Food Science and Engineering, Shandong Agricultural University, Tai’an 271018, China; 2. Shandong Provincial Key Laboratory of Quality Safety Monitoring for Animal Products and Veterinary Drug Innovation, Tai’an 271018, China; 3. Animal Husbandry and Veterinary Branch, Heilongjiang Academy of Agricultural Sciences, Qiqihar 150086, China; 4. National Beef Cattle Industrial Technology System, Baoding Station, Baoding 072650, China)
  • Online:2026-08-15 Published:2026-08-24

摘要: 以3 种不同极限pH值(ultimate pH value,pHu)牛肉(正常pHu型、中间pHu型、高pHu型)肌浆蛋白为研究对象,通过分析肌浆蛋白的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳、二级结构、紫外光谱特征、荧光光谱特征、浊度、粒径及Zeta电位、表面疏水性、溶解度、巯基含量及乳化特性,探究不同pHu牛肉肌浆蛋白理化性质及结构特性的差异机制。结果表明,3 种牛肉肌浆蛋白在组成上无显著区别,但在分子构象上存在系统性差异。正常pHu型牛肉肌浆蛋白的β-折叠含量、表面疏水性及紫外吸收最高,荧光强度、Zeta电位绝对值及巯基含量最低,表明其分子构象伸展,疏水区域暴露,静电斥力弱,蛋白质分子易聚集,表现为最低的溶解度与最高的浊度和粒径。相比之下,中间pHu型与高pHu型牛肉肌浆蛋白的α-螺旋及柔性结构含量更高,荧光强度、巯基含量及Zeta电位绝对值更大,疏水性更低,呈现更紧密有序的分子构象,从而具有较高的溶解度和较低的浊度和粒径。这些结构变化导致了功能特性的差异,高pHu型牛肉肌浆蛋白由于结构特性有利于快速界面吸附,表现出最佳的乳化活性;中间pHu型牛肉肌浆蛋白则因构象稳定,能够形成更坚固的界面膜,从而具备最优的乳化稳定性。综上,不同牛肉自身的pH值是决定其肌浆蛋白构象状态与功能特性的关键内在因素,本研究结果有助于针对不同产品需求科学筛选与适配原料肉。

关键词: 牛肉;极限pH值;肌浆蛋白;理化特性;结构特性

Abstract: This study focused on sarcoplasmic proteins from three types of beef with different ultimate pH (normal, intermediate, and high pHu). The sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) patterns, secondary structure, ultraviolet (UV) spectral characteristics, fluorescence spectral characteristics, turbidity, particle size and zeta potential, surface hydrophobicity, solubility, thiol content and emulsifying properties were analyzed to explore the mechanism underlying the differences in physicochemical properties and structural characteristics of these sarcoplasmic proteins. Results indicated no significant compositional differences among the three sarcoplasmic proteins, but systematic variations existed in molecular conformation. The normal pHu beef sarcoplasmic protein had the highest β-sheet content, surface hydrophobicity and UV absorbance value, while the fluorescence intensity, absolute value of zeta potential, and sulfhydryl content were the lowest. This indicates that its molecular conformation was extended, the hydrophobic region was exposed, the electrostatic repulsion was weak, and the protein was prone to aggregation, resulting in the lowest solubility, highest turbidity, and largest particle size. In contrast, the intermediate pHu and high pHu beef sarcoplasmic proteins had higher α-helix and flexible structure contents, greater fluorescence intensity, higher sulfhydryl content, larger absolute value of zeta potential, lower hydrophobicity, and a more compact and ordered molecular conformation, thus resulting in higher solubility and lower turbidity and particle size. These structural changes led to differences in functional properties. The high pHu beef sarcoplasmic protein exhibited the best emulsifying activity due to its structural characteristics that facilitated rapid interface adsorption, whereas the intermediate pHu beef sarcoplasmic protein had a stable conformation and could form a more solid interface membrane, thus possessing the optimal emulsifying stability. In summary, the pHu of beef is a key intrinsic factor determining the conformation and functional properties of its sarcoplasmic proteins. This finding helps to scientifically select and match raw meat for different product-specific requirements in meat processing.

Key words: beef; ultimate pH; sarcoplasmic protein; physicochemical properties; structural characteristics

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