Cortisol enhances citrulline synthesis from proline in enterocytes of suckling piglets

E Lichar Dillon1, Guoyao Wu2

  • 1Department of Animal Science and Faculty of Nutrition, Texas A&M University, College Station, TX, 77843-2471, USA.

Amino Acids
|July 10, 2021
PubMed

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.

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