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Cortisol enhances citrulline synthesis from proline in enterocytes of suckling piglets
1Department of Animal Science and Faculty of Nutrition, Texas A&M University, College Station, TX, 77843-2471, USA.
Insights
Cortisol administration in piglets did not increase plasma arginine but enhanced intestinal growth and citrulline synthesis from proline. This highlights proline oxidase
Area of Science:
- Animal Physiology
- Biochemistry
- Developmental Biology
Background:
- Plasma cortisol and arginine concentrations, along with intestinal citrulline synthesis, decrease in piglets during the first 14 days of life.
- Arginine is an essential amino acid for neonates, crucial for growth and development.
- Proline serves as a precursor for citrulline and arginine synthesis in the intestine.
Purpose of the Study:
- To investigate if cortisol administration can prevent the decline in intestinal citrulline and arginine synthesis from proline in suckling piglets.
- To determine the effect of cortisol on plasma arginine concentration and overall piglet growth.
- To explore the role of proline metabolism in the developing mammalian small intestine.
Main Methods:
- Seven-day-old piglets received daily intramuscular injections of hydrocortisone acetate or a vehicle solution for 7 days.
- Jejunal enterocytes were isolated and incubated with radiolabeled proline and glutamine to measure citrulline and arginine synthesis.
- Enzyme activities (proline oxidase, N-acetylglutamate synthase, argininosuccinate lyase, arginase-II) and metabolite concentrations were analyzed.
Main Results:
- Cortisol treatment increased plasma cortisol, proline oxidase, and N-acetylglutamate synthase activities, enhancing citrulline and arginine synthesis from proline.
- Despite increased synthesis, plasma arginine concentration remained unchanged due to induced arginase-II activity.
- Cortisol administration did not affect milk consumption or growth rate but increased jejunal and ileal villus height.
Conclusions:
- Cortisol plays a role in regulating proline metabolism for citrulline and arginine synthesis in pig enterocytes.
- Proline catabolism, particularly proline oxidase activity, is important for intestinal growth and arginine production.
- These findings have implications for understanding small intestinal development and health in mammals.
Abstract:
There are marked decreases in plasma concentrations of cortisol and arginine (an essential amino acid for neonates) as well as intestinal citrulline synthesis in piglets during the first 14 days of life. The objective of this study was to test the hypothesis that increasing plasma cortisol concentrations by cortisol administration may prevent the decline in intestinal citrulline and arginine synthesis from proline, thereby possibly increasing plasma arginine concentration in suckling piglets and their growth. Seven-day-old pigs reared by sows received daily intramuscular injections of hydrocortisone 21-acetate (25 mg/kg) or vehicle solution (saline) (n = 10/group). At 14 days of age, piglets were used to prepare jejunal enterocytes. Cells were incubated at 37 °C for 30 min in oxygenated Krebs buffer containing 5 mM glucose, 2 mM [U-14C]proline, and 2 mM glutamine. Cortisol treatment increased plasma cortisol concentration, mitochondrial proline oxidase and N-acetylglutamate synthase activities, cytosolic argininosuccinate lyase activity, and the intracellular concentrations of N-acetylglutamate and carbamoyl phosphate for citrulline and arginine synthesis. However, cortisol treatment induced the expression of intestinal arginase-II for arginine hydrolysis, resulting in no change in plasma arginine concentration. Administration of cortisol had no effect on milk consumption or the whole-body growth rate of piglets, but increased villus height in the jejunum and ileum. Collectively, these results suggest an important role for proline oxidase and N-acetylglutamate in regulating citrulline and arginine synthesis from proline in pig enterocytes. Because proline catabolism plays an important role in modulating protein synthesis, cell proliferation, and arginine production, our findings may have important implications for understanding the role of proline oxidase in the growth and health of the mammalian small intestine.
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