Li S S, Loor J J, Liu H Y, Liu L, Hosseini A, Zhao W S, Liu J X
Institute of Dairy Science, College of Animal Sciences, MoE Key Laboratory of Molecular Animal Nutrition, Zhejiang University, Hangzhou 310058, P. R. China.
Mammalian NutriPhysioGenomics, Department of Animal Sciences and Division of Nutritional Sciences, University of Illinois, Urbana 61801.
J Dairy Sci. 2017 Aug;100(8):6676-6688. doi: 10.3168/jds.2017-12681. Epub 2017 May 30.
Amino acids are the building blocks of proteins and serve as key molecular components upstream of the signaling pathways that regulate protein synthesis. The objective of this study was to systematically investigate the effect of essential AA ratios on milk protein synthesis in vitro and to elucidate some of the underlying mechanisms. Triplicate cultures of MAC-T cells and bovine mammary tissue explants (MTE) were incubated with the optimal AA ratio (OPAA; Lys:Met, 2.9:1; Thr:Phe, 1.05:1; Lys:Thr, 1.8:1; Lys:His, 2.38:1; and Lys:Val, 1.23:1) in the presence of rapamycin (control), OPAA, a Lys:Thr ratio of 2.1:1, a Lys:Thr ratio of 1.3:1, a Lys:His ratio of 3.05:1, or a Lys:Val ratio of 1.62:1 for 12 h; the other AA concentrations were equal to OPAA. In some experiments, the cells were cultured with OPAA with or without rapamycin (100 ng/mL) or with mammalian target of rapamycin (mTOR) small interference RNA, and the MTE were exposed to OPAA with rapamycin for β-casein expression. Among the treatments, the expression of β-casein was greatest in the MTE cultured with OPAA. In MAC-T cells, the OPAA upregulated the mRNA expression of SLC1A5 and SLC7A5 but downregulated the expression of IRS1, AKT3, EEF1A1, and EEF2 compared with the control. The OPAA had no effect on the mTOR phosphorylation status but increased the phosphorylation of S6K1 and RPS6. When the MTE were treated with rapamycin in the presence of OPAA, the expression of β-casein was markedly decreased. The phosphorylation of RPS6 and 4EBP1 also was reduced in MAC-T cells. A similar negative effect on the expression of RPS6KB1 and EIF4EBP1 was detected when the cells were cultured with either rapamycin or mTOR small interference RNA. The optimal AA ratio stimulated β-casein expression partly by enhancing the transport of AA into the cells, cross-talk with insulin signaling and a subsequent enhancement of mTOR signaling, or translation elongation in both MAC-T cells and bovine MTE.
氨基酸是蛋白质的组成成分,并且作为调节蛋白质合成的信号通路上游的关键分子成分。本研究的目的是系统地研究必需氨基酸比例对体外乳蛋白合成的影响,并阐明一些潜在机制。将MAC-T细胞和牛乳腺组织外植体(MTE)的三份重复培养物在雷帕霉素存在下(对照)、最优氨基酸比例(OPAA;赖氨酸:蛋氨酸,2.9:1;苏氨酸:苯丙氨酸,1.05:1;赖氨酸:苏氨酸,1.8:1;赖氨酸:组氨酸,2.38:1;以及赖氨酸:缬氨酸,1.23:1)、赖氨酸:苏氨酸比例为2.1:1、赖氨酸:苏氨酸比例为1.3:1、赖氨酸:组氨酸比例为3.05:1或赖氨酸:缬氨酸比例为1.62:1的条件下培养12小时;其他氨基酸浓度与OPAA相等。在一些实验中,细胞用含或不含雷帕霉素(100 ng/mL)的OPAA培养,或者用雷帕霉素的哺乳动物靶点(mTOR)小干扰RNA培养,并且MTE暴露于含雷帕霉素的OPAA以检测β-酪蛋白表达。在各处理中,用OPAA培养的MTE中β-酪蛋白的表达最高。在MAC-T细胞中,与对照相比,OPAA上调了SLC1A5和SLC7A5的mRNA表达,但下调了IRS1、AKT3、EEF1A1和EEF2的表达。OPAA对mTOR磷酸化状态没有影响,但增加了S6K1和RPS6的磷酸化。当MTE在OPAA存在下用雷帕霉素处理时,β-酪蛋白的表达明显降低。MAC-T细胞中RPS6和4EBP1的磷酸化也降低。当细胞用雷帕霉素或mTOR小干扰RNA培养时,检测到对RPS6KB1和EIF4EBP1的表达有类似的负面影响。最优氨基酸比例部分通过增强氨基酸向细胞内的转运、与胰岛素信号的相互作用以及随后mTOR信号的增强或在MAC-T细胞和牛MTE中的翻译延伸来刺激β-酪蛋白的表达。