Bioinformatics and Biology Insights Gene Networks Driving Bovine Mammary Protein Synthesis during the Lactation Cycle
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Summary
The overall data support a central role of AA and glucose transporters and insulin signaling through mTOR for the regulation of protein synthesis in bovine mammary gland.
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References
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- Establishment and characterization of dairy cow growth hormone secreting anterior pituitary cell model
- SESN2 negatively regulates cell proliferation and casein synthesis by inhibition the amino acid-mediated mTORC1 pathway in cow mammary epithelial cells
- GLUT1 and lactose synthetase are critical genes for lactose synthesis in lactating sows
- Identification of candidate genes associated with milk production and mastitis based on transcriptome-wide association study.
- ANALYSIS OF THE ROLE OF TWO AUTOPHAGY PATHWAY RELATED GENES, BECN1 AND TSC1, IN MURINE MAMMARY GLAND DEVELOPMENT AND DIFFERENTIATION
- Transition cows: hepatic endocannabinoid system gene expression in response to prepartal plane of nutrition and the effects of genetic merit on genes of lipid metabolism in adipose tissue
- Chemerin is a novel regulator of lactogenesis in bovine mammary epithelial cells.
- 14-3-3γ Regulates Lipopolysaccharide-Induced Inflammatory Responses and Lactation in Dairy Cow Mammary Epithelial Cells by Inhibiting NF-κB and MAPKs and Up-Regulating mTOR Signaling
- Administration of Exogenous Growth Hormone Is Associated with Changes in Plasma and Intracellular Mammary Amino Acid Profiles and Abundance of the Mammary Gland Amino Acid Transporter SLC3A2 in Mid-Lactation Dairy Cows
- 60S ribosomal protein L35 regulates β-casein translational elongation and secretion in bovine mammary epithelial cells.
- Diets rich in starch improve the efficiency of amino acids use by the mammary gland in lactating Jersey cows.
- Intestinal lactic acid bacteria from Muscovy duck as potential probiotics that alter adhesion factor gene expression.
- Methionyl-Methionine Promotes α-s1 Casein Synthesis in Bovine Mammary Gland Explants by Enhancing Intracellular Substrate Availability and Activating JAK2-STAT5 and mTOR-Mediated Signaling Pathways.
- Functional development of the adult ovine mammary gland—insights from gene expression profiling
- SOCS3-Mediated Blockade Reveals Major Contribution of JAK2/STAT5 Signaling Pathway to Lactation and Proliferation of Dairy Cow Mammary Epithelial Cells in Vitro
- Bioinformatics and Gene Network Analyses of the Swine Mammary Gland Transcriptome during Late Gestation
- Old and New Stories: Revelations from Functional Analysis of the Bovine Mammary Transcriptome during the Lactation Cycle
- Stat5a increases lactation of dairy cow mammary gland epithelial cells cultured in vitro
- Cloning and functional analysis of goat glucose transporter 4
- Proteomic and Functional Analyses Reveal MAPK1 Regulates Milk Protein Synthesis
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