Department of Animal Science and Technology, Konkuk University, Seoul 05029, Korea.
Institute of Animal Science, College of Agriculture and Food Sciences, University of the Philippines Los Baños, College Batong Malake, Los Baños, Laguna 4031, Philippines.
Int J Mol Sci. 2021 Mar 9;22(5):2751. doi: 10.3390/ijms22052751.
The objective of this study was to investigate the effects of supplementing with L-tryptophan (L-Trp) on milk protein synthesis using an immortalized bovine mammary epithelial (MAC-T) cell line. Cells were treated with 0, 0.3, 0.6, 0.9, 1.2, and 1.5 mM of supplemental L-Trp, and the most efficient time for protein synthesis was determined by measuring cell, medium, and total protein at 0, 24, 48, 72, and 96 h. Time and dose tests showed that the 48 h incubation time and a 0.9 mM dose of L-Trp were the optimal values. The mechanism of milk protein synthesis was elucidated through proteomic analysis to identify the metabolic pathway involved. When L-Trp was supplemented, extracellular protein (medium protein) reached its peak at 48 h, whereas intracellular cell protein reached its peak at 96 h with all L-Trp doses. β-casein mRNA gene expression and genes related to milk protein synthesis, such as mammalian target of rapamycin (mTOR) and ribosomal protein 6 (RPS6) genes, were also stimulated ( < 0.05). Overall, there were 51 upregulated and 59 downregulated proteins, many of which are involved in protein synthesis. The results of protein pathway analysis showed that L-Trp stimulated glycolysis, the pentose phosphate pathway, and ATP synthesis, which are pathways involved in energy metabolism. Together, these results demonstrate that L-Trp supplementation, particularly at 0.9 mM, is an effective stimulus in β-casein synthesis by stimulating genes, proteins, and pathways related to protein and energy metabolism.
本研究旨在探讨补充色氨酸(L-Trp)对永生化牛乳腺上皮(MAC-T)细胞系中乳蛋白合成的影响。用 0、0.3、0.6、0.9、1.2 和 1.5mM 的补充 L-Trp 处理细胞,并通过在 0、24、48、72 和 96h 时测量细胞、培养基和总蛋白来确定蛋白质合成的最有效时间。时间和剂量试验表明,48h 孵育时间和 0.9mM 的 L-Trp 剂量是最佳值。通过蛋白质组学分析阐明乳蛋白合成的机制,以鉴定涉及的代谢途径。当补充 L-Trp 时,细胞外蛋白(培养基蛋白)在 48h 时达到峰值,而所有 L-Trp 剂量下细胞内细胞蛋白在 96h 时达到峰值。β-酪蛋白 mRNA 基因表达和与乳蛋白合成相关的基因,如雷帕霉素靶蛋白(mTOR)和核糖体蛋白 6(RPS6)基因,也受到刺激(<0.05)。总的来说,有 51 个上调和 59 个下调蛋白,其中许多与蛋白质合成有关。蛋白途径分析的结果表明,L-Trp 刺激糖酵解、戊糖磷酸途径和 ATP 合成,这些途径与能量代谢有关。综上所述,L-Trp 补充,特别是在 0.9mM 时,通过刺激与蛋白质和能量代谢相关的基因、蛋白和途径,是刺激β-酪蛋白合成的有效刺激物。