Effects of weaning on intestinal crypt epithelial cells in piglets

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作者
Huansheng Yang
Xia Xiong
Xiaocheng Wang
Tiejun Li
Yulong Yin
机构
[1] Animal Nutrition and Human Health Laboratory,
[2] School of Life Sciences,undefined
[3] Hunan Normal University,undefined
[4] Chinese Academy of Science,undefined
[5] Institute of Subtropical Agriculture,undefined
[6] Research Center for Healthy Breeding of Livestock and Poultry,undefined
[7] Hunan Engineering and Research Center of Animal and Poultry Science and Key Laboratory for Agroecological Processes in Subtropical Region,undefined
[8] Scientific Observation and Experimental Station of Animal Nutrition and Feed Science in South-Central,undefined
[9] Ministry of Agriculture,undefined
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摘要
Intestinal epithelial cells in the crypt proliferate in piglets in response to weaning. However, the underlying mechanism has been unclear. We examined 40 piglets from eight litters (five piglets per litter) that were weaned at the age of 14 d, and one piglet from each litter was randomly selected for closer investigation. Based on the distended intestinal sac method, we isolated crypt epithelial cells from the mid-jejunum on Days 0, 1, 3, 5, and 7 post-weaning. Protein expression was analyzed using either isobaric tags for relative and absolute quantification or western blotting. Proteins related to the cell cycle, organization of the cellular macromolecular complex subunit, localization of cellular macromolecules, Golgi vesicle transport, fatty acid metabolism, oxidative phosphorylation, and translational initiation were mainly down-regulated, while those involved in glycolysis, cell cycle arrest, protein catabolism, and cellular amino acid metabolism were up-regulated. The amount of proteins active in the mTOR signaling pathway was generally decreased over time. These results indicate that weaning influences energy metabolism, cellular macromolecule organization and localization, and protein metabolism, thereby affecting the proliferation of intestinal epithelial cells in weaned piglets. Moreover, those cellular processes are possibly controlled by that signaling pathway.
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