Branched-chain amino acids regulate intracellular protein turnover in porcine mammary epithelial cells
Author:
Funder
Texas A&M AgriLife Research
Publisher
Springer Science and Business Media LLC
Subject
Organic Chemistry,Clinical Biochemistry,Biochemistry
Link
https://link.springer.com/content/pdf/10.1007/s00726-022-03203-y.pdf
Reference75 articles.
1. Appuhamy JA, Knoebel NA, Nayananjalie WD, Escobar J, Hanigan M (2012) Isoleucine and leucine independently regulate mTOR signaling and protein synthesis in MAC-T cells and bovine mammary tissue slices. J Nutr 142:484–491
2. Assaad H, Hou YQ, Zhou L, Carroll RJ, Wu G (2015) Rapid publication-ready MS-Word tables for two-way ANOVA. Springer plus 4:33
3. Assaad H, Zhou L, Carroll RJ, Wu G (2014) Rapid publication-ready MS word tables for one-way ANOVA. Springer plus 3:474
4. Boyd DR, Kensinger RS, Harrell RJ, Bauman DE (1995) Nutrient uptake and endocrine regulation of milk synthesis by mammary tissue of lactating sows. J Anim Sci 73:36–56
5. Chalvon-Demersay T, Luise D, Le Floc’h N, Tesseraud S, Lambert W, Bosi P, Trevisi P, Beaumont M, Corrent E (2021) Functional amino acids in pigs and chickens: implication for gut health. Front Vet Sci 8:663727
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