Ministry of Agriculture-Milk Risk Assessment Laboratory, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China; College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China; Ministry of Agriculture-Milk and Dairy Product Inspection Center, Beijing 100193, China; State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
Ministry of Agriculture-Milk Risk Assessment Laboratory, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China; Ministry of Agriculture-Milk and Dairy Product Inspection Center, Beijing 100193, China; State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China.
J Dairy Sci. 2017 Sep;100(9):7696-7709. doi: 10.3168/jds.2015-10729. Epub 2017 Jun 21.
The ratio of different AA in the diets of cows is vital to improve milk protein yield. β-Casein is one of the important milk proteins with high nutritive value. However, the suitable ratio of essential amino acids (EAA) for the expression of β-casein in the immortalized bovine mammary epithelial cell line is not fully characterized. This study employed response surface methodology to determine the optimal ratio of His, Lys, Met, and Leu on β-casein expression level in vitro and clarified the effect of the 4 EAA on β-casein via the mechanistic target of rapamycin (mTOR) signaling pathway. A central composite design containing 5 axial points per EAA and 28 combinations of the 4 EAA was used in our study. The results of response surface methodology and the changes of the mTOR-related signaling proteins were determined by western blot. The results showed that β-casein level was significantly affected by all 4 EAA (R = 0.71). The optimum conditions for β-casein expression are found to be 5.47 mM of His, 7.48 mM of Lys, 1.17 mM of Met, and 8.21 mM of Leu (His:Lys:Met:Leu = 5:6:1:7) in the designed scope of concentration. The interaction of Leu and Met significantly affected β-casein expression (P < 0.01). The phosphorylation of mTOR (Ser), regulatory associated protein of target of rapamycin (Ser), ribosomal protein S6 kinase 1 (Thr), ribosomal protein S6 (Ser), and eukaryotic elongation factor 2 (Thr) was increased with the supplementation of either single EAA or an optimal combination of EAA. However, the phosphorylation of eukaryotic initiation factor 4E binding protein 1 (Thr) was decreased with the addition of Lys, Met, or Leu alone. Furthermore, the phosphorylation (P) of eIF2α (Ser) was decreased when Met was supplemented alone. Under the optimal mixture of 4 EAA, the phosphorylation of mechanistic target of rapamycin complex 1 signaling proteins was significantly greater than the single EAA supplementations and the expression of β-casein was 98% as high as the positive control (i.e., medium with all AA). A similar trend was found with P-ribosomal protein S6 kinase 1 and P-ribosomal protein S6. In conclusion, the extracellular concentrations of His, Lys, Met, and Leu at a ratio of 5:6:1:7 maximized β-casein expression in the immortalized bovine mammary epithelial cell line may occur via activation of the mechanistic target of rapamycin complex 1 signaling pathway.
奶牛饮食中不同 AA 的比例对于提高牛奶蛋白产量至关重要。β-酪蛋白是一种具有高营养价值的重要乳蛋白。然而,对于在永生化牛乳腺上皮细胞系中β-酪蛋白表达的必需氨基酸(EAA)的合适比例尚未完全确定。本研究采用响应面法确定 His、Lys、Met 和 Leu 对体外β-酪蛋白表达水平的最佳比例,并通过雷帕霉素(mTOR)信号通路阐明 4 种 EAA 对β-酪蛋白的影响。我们的研究使用包含每个 EAA 的 5 个轴向点和 4 种 EAA 的 28 种组合的中心复合设计。通过 Western blot 确定响应面法的结果和 mTOR 相关信号蛋白的变化。结果表明,所有 4 种 EAA 均显著影响β-酪蛋白水平(R = 0.71)。在设计的浓度范围内,发现β-酪蛋白表达的最佳条件为 His 5.47 mM、Lys 7.48 mM、Met 1.17 mM 和 Leu 8.21 mM(His:Lys:Met:Leu = 5:6:1:7)。Leu 和 Met 的相互作用显著影响β-酪蛋白表达(P < 0.01)。mTOR(Ser)、雷帕霉素靶蛋白的调节相关蛋白(Ser)、核糖体蛋白 S6 激酶 1(Thr)、核糖体蛋白 S6(Ser)和真核延伸因子 2(Thr)的磷酸化随着单一 EAA 或 EAA 的最佳组合的补充而增加。然而,随着 Lys、Met 或 Leu 的单独添加,真核起始因子 4E 结合蛋白 1(Thr)的磷酸化减少。此外,当单独添加 Met 时,eIF2α(Ser)的磷酸化(P)减少。在最佳的 4 种 EAA 混合物下,mTOR 复合物 1 信号蛋白的磷酸化明显大于单一 EAA 补充,β-酪蛋白的表达比阳性对照(即含有所有 AA 的培养基)高 98%。核糖体蛋白 S6 激酶 1 和核糖体蛋白 S6 的 P 也有类似的趋势。总之,在永生化牛乳腺上皮细胞系中,His、Lys、Met 和 Leu 的细胞外浓度比为 5:6:1:7 可最大程度地提高β-酪蛋白的表达,这可能是通过激活 mTOR 复合物 1 信号通路实现的。