Valine supplementation during late pregnancy in gilts increases colostral protein synthesis through stimulating mTOR signaling pathway in mammary cells
文献类型: 外文期刊
第一作者: Che, Long
作者: Che, Long;Xu, Mengmeng;Wu, De;Che, Long;Xu, Mengmeng;Wu, De;Che, Long;Xu, Mengmeng;Gao, Kaiguo;Wang, Li;Yang, Xuefen;Wen, Xiaolu;Xiao, Hao;Jiang, Zongyong;Che, Long;Xu, Mengmeng;Gao, Kaiguo;Wang, Li;Yang, Xuefen;Wen, Xiaolu;Xiao, Hao;Jiang, Zongyong;Che, Long;Xu, Mengmeng;Gao, Kaiguo;Wang, Li;Yang, Xuefen;Wen, Xiaolu;Xiao, Hao;Jiang, Zongyong;Che, Long;Xu, Mengmeng;Gao, Kaiguo;Wang, Li;Yang, Xuefen;Wen, Xiaolu;Xiao, Hao;Jiang, Zongyong;Che, Long;Xu, Mengmeng;Gao, Kaiguo;Wang, Li;Yang, Xuefen;Wen, Xiaolu;Xiao, Hao;Jiang, Zongyong
作者机构:
关键词: Valine; PMEC; mTOR; Lactation sows
期刊名称:AMINO ACIDS ( 影响因子:3.52; 五年影响因子:3.6 )
ISSN: 0939-4451
年卷期: 2019 年 51 卷 10-12 期
页码:
收录情况: SCI
摘要: Mammary gland development during late pregnancy in sows is a major factor affecting the composition of colostrum and milk and the pre-weaning growth of piglets, while valine is essential for protein and nitrogen metabolism in mammary gland of sow. However, the effects of valine and its underlying mechanism on mammary gland development during late pregnancy are still unclear. Here, we hypothesized that dosage of dietary valine during late pregnancy will affect protein synthesis of colostrum in gilts. The results showed that supplementation of valine during late pregnancy significantly increased content of protein (P < 0.01), fat (P = 0.02) and solids-non-fat (P = 0.04) in colostrum. Our in vitro study also confirmed that valine supplementation increased protein synthesis and cell proliferation in porcine mammary epithelial cells (PMEC). Furthermore, these changes were associated with elevated phosphorylation levels of mammalian target of rapamycin (mTOR), and ribosomal protein S6 kinase (S6) and eukaryotic initiation factor 4E-binding protein-1 (4EBP1) in valine-supplemented cells, which could be effectively blocked by the antagonists of mTOR. These findings indicated that valine enhanced mammary gland development and protein synthesis in colostrum via the mTOR signaling pathway. These results, using an in vivo and in vitro model, helped to understand the beneficial effects of dietary valine supplementation on gilts.
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