School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.
Guangdong Food Green Processing and Nutrition Regulation Technologies Research Center, Guangzhou 510650, China.
J Agric Food Chem. 2023 Feb 15;71(6):3010-3021. doi: 10.1021/acs.jafc.2c08269. Epub 2023 Feb 7.
The purpose of this study was to investigate the effects of characteristics of whey protein hydrolysates (WPHs) on energy metabolism in exercise mice. Results showed that high-degree of hydrolysis (DH) hydrolysates (22%, H-Alc and H-AXH) showed better anti-fatigue effects than low-DH hydrolysates (10%, L-Alc and L-AXH) in enhancing energy substances and reducing metabolic byproducts. It might be related to the higher content of components less than 3 kDa in H-Alc and H-AXH (92.35 and 81.05%, respectively) and higher intensities of small peptides containing two to nine residues. Moreover, Western blot results revealed that WPHs maintained the energy balance in exercise mice by regulating the AMP-activated protein kinase (AMPK) and mTOR signaling pathways. Notably, H-Alc had higher intensities of peptides containing two to five residues than H-AXH and these peptides were rich in essential amino acids, which might explain why H-Alc exhibited better effects in decreasing protein metabolites. Meanwhile, H-AXH contained more free amino acids, especially Leu, which might contribute to its ability to promote glucose consumption in muscle. Furthermore, 40 peptides with two to nine residues and high intensities (>5 × 10) were screened from H-Alc and H-AXH and predicted by bioinformatics tools. Among them, LLL, LLF, GTW, AGTW, and ALPM showed high bioavailability, cell permeability, and potential bioactivity.
本研究旨在探讨乳清蛋白水解物(WPHs)特性对运动小鼠能量代谢的影响。结果表明,高水解度(DH)水解物(22%,H-Alc 和 H-AXH)在增强能量物质和减少代谢副产物方面比低 DH 水解物(10%,L-Alc 和 L-AXH)具有更好的抗疲劳作用。这可能与 H-Alc 和 H-AXH 中小于 3 kDa 的成分含量较高(分别为 92.35%和 81.05%)以及含有 2 至 9 个残基的小肽强度较高有关。此外,Western blot 结果表明,WPHs 通过调节 AMP 激活的蛋白激酶(AMPK)和 mTOR 信号通路,维持运动小鼠的能量平衡。值得注意的是,H-Alc 含有更多含有 2 至 5 个残基的肽,强度高于 H-AXH,这些肽富含必需氨基酸,这可能解释了 H-Alc 为何在降低蛋白质代谢物方面表现出更好的效果。同时,H-AXH 含有更多的游离氨基酸,尤其是亮氨酸,这可能有助于其促进肌肉中葡萄糖的消耗。此外,从 H-Alc 和 H-AXH 中筛选出 40 条具有 2 至 9 个残基且强度较高(>5×10)的肽,并通过生物信息学工具进行预测。其中,LLL、LLF、GTW、AGTW 和 ALPM 具有较高的生物利用度、细胞通透性和潜在的生物活性。