scholarly article | Q13442814 |
P356 | DOI | 10.1017/S0007114512004849 |
P698 | PubMed publication ID | 23211060 |
P2093 | author name string | Zhimin Huang | |
Junjun Wang | |||
Shiyan Qiao | |||
Xiangfang Zeng | |||
Xiangbing Mao | |||
P2860 | cites work | Effects of leptin adipose tissue lipoprotein lipase in the obese ob/ob mouse | Q77581839 |
Increasing dietary leucine intake reduces diet-induced obesity and improves glucose and cholesterol metabolism in mice via multimechanisms | Q79953652 | ||
A deficiency or excess of dietary threonine reduces protein synthesis in jejunum and skeletal muscle of young pigs | Q80357840 | ||
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Dietary arginine supplementation during early pregnancy enhances embryonic survival in rats | Q81670543 | ||
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Positional cloning of the mouse obese gene and its human homologue | Q22251285 | ||
A branched-chain amino acid-related metabolic signature that differentiates obese and lean humans and contributes to insulin resistance | Q28240815 | ||
The leptin receptor | Q28509967 | ||
Fat diet affects leptin receptor levels in the rat cerebellum | Q28567402 | ||
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Identification and expression cloning of a leptin receptor, OB-R | Q29620255 | ||
Model for the regulation of energy balance and adiposity by the central nervous system | Q33590911 | ||
Human IL6 enhances leptin action in mice | Q33628094 | ||
Phenotypes of mouse diabetes and rat fatty due to mutations in the OB (leptin) receptor | Q34373507 | ||
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Amino acid flooding doses for measuring rates of protein synthesis | Q38159964 | ||
Regulation of dietary energy level and oil source on leptin and its long form receptor mRNA expression of the adipose tissues in growing pigs | Q38316918 | ||
Molecular cloning, tissue distribution and ontogenetic expression of Xiang pig chemerin and its involvement in regulating energy metabolism through Akt and ERK1/2 signaling pathways | Q39530094 | ||
Leucine promotes leptin receptor expression in mouse C2C12 myotubes through the mTOR pathway | Q39740399 | ||
Leptin prevents the metabolic effects of adiponectin in L6 myotubes | Q39820031 | ||
Leucine stimulates HGF production by hepatic stellate cells through mTOR pathway | Q40139656 | ||
Leucine stimulates mammalian target of rapamycin signaling in C2C12 myoblasts in part through inhibition of adenosine monophosphate-activated protein kinase | Q40193113 | ||
Porcine leptin inhibits protein breakdown and stimulates fatty acid oxidation in C2C12 myotubes | Q40607035 | ||
Leptin stimulates glucose uptake in C2C12 muscle cells by activation of ERK2. | Q40908774 | ||
Myostatin regulates preadipocyte differentiation and lipid metabolism of adipocyte via ERK1/2. | Q42811575 | ||
Supplementing L-leucine to a low-protein diet increases tissue protein synthesis in weanling pigs | Q43062070 | ||
Insulin modulates leptin-induced STAT3 activation in rat hypothalamus. | Q43668023 | ||
Orally administered leucine enhances protein synthesis in skeletal muscle of diabetic rats in the absence of increases in 4E-BP1 or S6K1 phosphorylation | Q43935389 | ||
Branched-chain amino acids promote albumin synthesis in rat primary hepatocytes through the mTOR signal transduction system | Q44368203 | ||
Leptin as an adjunct of insulin therapy in insulin-deficient diabetes | Q44556262 | ||
Amino Acids and Insulin Control Autophagic Proteolysis through Different Signaling Pathways in Relation to mTOR in Isolated Rat Hepatocytes | Q44650510 | ||
Regulation of muscle protein degradation, not synthesis, by dietary leucine in rats fed a protein-deficient diet | Q46372074 | ||
Leucine suppresses myofibrillar proteolysis by down-regulating ubiquitin-proteasome pathway in chick skeletal muscles | Q46695281 | ||
A leucine-supplemented diet restores the defective postprandial inhibition of proteasome-dependent proteolysis in aged rat skeletal muscle | Q46728790 | ||
Insulin-like growth factor-1 (IGF-1) and leucine activate pig myogenic satellite cells through mammalian target of rapamycin (mTOR) pathway | Q46886038 | ||
The leucine content of a complete meal directs peak activation but not duration of skeletal muscle protein synthesis and mammalian target of rapamycin signaling in rats | Q47915397 | ||
Short-term effects of leptin on skeletal muscle protein metabolism in the rat | Q60403880 | ||
Amino acid excesses for young pigs: effects of excess methionine, tryptophan, threonine or leucine | Q70345054 | ||
Use of plasma urea nitrogen as a rapid response criterion to determine the lysine requirement of pigs2 | Q71847352 | ||
Leucine-supplemented meal feeding for ten days beneficially affects postprandial muscle protein synthesis in old rats | Q73209134 | ||
P433 | issue | 2 | |
P304 | page(s) | 256-264 | |
P577 | publication date | 2012-12-05 | |
P1433 | published in | British Journal of Nutrition | Q4970206 |
P1476 | title | Leptin and leucine synergistically regulate protein metabolism in C2C12 myotubes and mouse skeletal muscles | |
P478 | volume | 110 |
Q87258954 | Amino acids modulates the intestinal proteome associated with immune and stress response in weaning pig |
Q38925665 | Branched-chain amino acid ratios in low-protein diets regulate the free amino acid profile and the expression of hepatic fatty acid metabolism-related genes in growing pigs. |
Q41196473 | Branched-chain amino acids modulate the expression of hepatic fatty acid metabolism-related genes in female broiler chickens |
Q35763718 | Dietary Leucine Supplementation Improves the Mucin Production in the Jejunal Mucosa of the Weaned Pigs Challenged by Porcine Rotavirus |
Q47121987 | Dietary apple pectic oligosaccharide improves gut barrier function of rotavirus-challenged weaned pigs by increasing antioxidant capacity of enterocytes |
Q41673865 | Leucine supplementation improves leptin sensitivity in high-fat diet fed rats |
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Q37602564 | Novel metabolic and physiological functions of branched chain amino acids: a review |
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