Yuan Pengxiang, Chen Xiaonan, Benjakul Soottawat, Sun Jipeng, Zhang Bin
Key Laboratory of Health Risk Factors for Seafood of Zhejiang Province, College of Food Science and Pharmacy, Zhejiang Ocean University, China.
International Center of Excellence in Seafood Science and Innovation, Faculty of Agro-Industry, Prince of Songkla University, Thailand.
Food Chem X. 2022 Feb 26;14:100275. doi: 10.1016/j.fochx.2022.100275. eCollection 2022 Jun 30.
Chemical- and liquid chromatography coupled with mass spectrometry (LC-MS) based proteomics strategies were executed to investigate the alterations of protein profiles in pike eel () muscle during chilling (CPE) and frozen (FPE) storage. Chemical results indicated that springiness and myofibrillar protein (MP) content of muscle tissues decreased significantly during 6 days of chilled and 120 days of frozen storage. LC-MS-based proteomics analysis suggested that great alterations occurred in muscle proteins mainly induced by cold stress. The differentially abundant proteins (DAPs) with low abundances in CPE and FPE samples included the annexins, fibronectin, ribosomal proteins, -complex proteins, tubulin beta chain, and histones, which were mostly associated with the membrane structural constituents, cytoskeleton, and binding functional proteins. Results of eukaryotic cluster of orthologous group (KOG) verified that these identified DAPs were mainly converged in the cytoskeleton function resulting from cold conditions, which in turn affected the physical structure and chemical performances of muscle tissues.
采用基于化学和液相色谱-质谱联用(LC-MS)的蛋白质组学策略,研究了海鳗肌肉在冷藏(CPE)和冷冻(FPE)储存期间蛋白质谱的变化。化学分析结果表明,在6天的冷藏和120天的冷冻储存期间,肌肉组织的弹性和肌原纤维蛋白(MP)含量显著下降。基于LC-MS的蛋白质组学分析表明,肌肉蛋白质发生了很大变化,主要是由冷应激引起的。在CPE和FPE样品中丰度较低的差异丰富蛋白(DAP)包括膜联蛋白、纤连蛋白、核糖体蛋白、-复合体蛋白、微管蛋白β链和组蛋白,它们大多与膜结构成分、细胞骨架和结合功能蛋白有关。真核直系同源群(KOG)的结果证实,这些鉴定出的DAP主要集中在寒冷条件下产生的细胞骨架功能上,进而影响了肌肉组织的物理结构和化学性能。