State Key Laboratory of Animal Nutrition, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Haidian District, Beijing, Peoples Republic of China; and.
Physiol Genomics. 2014 Apr 1;46(7):268-75. doi: 10.1152/physiolgenomics.00119.2013. Epub 2014 Jan 28.
This study was conducted to determine the optimum ratio of lysine and methionine (Lys:Met) to enhance milk protein concentration in vitro, focusing on the regulation of genes related to the JAK2-STAT5 and the mammalian target of rapamycin (mTOR) signaling pathways. A preliminary dose response study revealed that casein concentration peaked (2.5-2.7 ppm) at a supplemental Lys concentration of 1.2 mM and Met at 0.5 mM. At the peak casein concentration cell proliferation rate also was higher. Furthermore, the expression of CSN1S1, CSN1S2, CSN2, CSN3, LALBA, JAK2, STAT5, and MTOR was upregulated with both Lys and Met compared with the control. A subsequent experiment was conducted as a 5 × 3 factorial design with supplemental Lys plus Met at different ratios. When the supplemental concentration of Lys was 1.2 mM and Met was 0.4 mM (∼3:1), the concentration of casein peaked. Therefore, we measured gene expression, mTOR protein expression, and phosphorylated mTOR (p-mTOR) in cultures incubated with 3:1 Lys:Met (Lys&Met). Expression of CSN1S1 and LALBA were the most highly expressed genes (P < 0.01). The upregulation of CSN2, CSN3, CSN1S2 isoforms (P < 0.01) and JAK2, ELF5, mTOR (P < 0.05) was also observed. Total mTOR protein expression was greater (P < 0.05) with Lys alone and also Lys&Met. However, Lys&Met resulted in the greatest (P < 0.05) p-mTOR. Results suggest that peak concentration of casein at a supplemental 3:1 Lys:Met is driven in part via upregulation of the mRNA expression of components of the JAK-STAT and mTOR pathways.
本研究旨在确定赖氨酸和蛋氨酸(Lys:Met)的最佳比例,以提高体外牛奶蛋白浓度,重点关注与 JAK2-STAT5 和哺乳动物雷帕霉素靶蛋白(mTOR)信号通路相关基因的调节。初步的剂量反应研究表明,在补充赖氨酸浓度为 1.2 mM 和蛋氨酸浓度为 0.5 mM 时,酪蛋白浓度达到峰值(2.5-2.7 ppm)。在酪蛋白浓度峰值时,细胞增殖率也更高。此外,与对照组相比,CSN1S1、CSN1S2、CSN2、CSN3、LALBA、JAK2、STAT5 和 MTOR 的表达均因添加 Lys 和 Met 而上调。随后进行了一项 5×3 析因设计实验,在不同比例下添加 Lys 和 Met。当补充 Lys 浓度为 1.2 mM 和 Met 浓度为 0.4 mM(约 3:1)时,酪蛋白浓度达到峰值。因此,我们测量了在 3:1 Lys:Met(Lys&Met)孵育的培养物中的基因表达、mTOR 蛋白表达和磷酸化 mTOR(p-mTOR)。CSN1S1 和 LALBA 的表达是最高的基因(P < 0.01)。CSN2、CSN3、CSN1S2 同工型(P < 0.01)和 JAK2、ELF5、mTOR 的上调也观察到(P < 0.05)。Lys 单独和 Lys&Met 也导致总 mTOR 蛋白表达增加(P < 0.05)。然而,Lys&Met 导致最大的(P < 0.05)p-mTOR。结果表明,在补充 3:1 Lys:Met 时,酪蛋白浓度达到峰值部分是由于 JAK-STAT 和 mTOR 通路成分的 mRNA 表达上调所致。