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Arginine-dependent immune responses

Published inCellular and molecular life sciences, vol. 78, no. 13, p. 5303-5324
Publication date2021-07
First online date2021-05-26
Abstract

A growing body of evidence indicates that, over the course of evolution of the immune system, arginine has been selected as a node for the regulation of immune responses. An appropriate supply of arginine has long been associated with the improvement of immune responses. In addition to being a building block for protein synthesis, arginine serves as a substrate for distinct metabolic pathways that profoundly affect immune cell biology; especially macrophage, dendritic cell and T cell immunobiology. Arginine availability, synthesis, and catabolism are highly interrelated aspects of immune responses and their fine-tuning can dictate divergent pro-inflammatory or anti-inflammatory immune outcomes. Here, we review the organismal pathways of arginine metabolism in humans and rodents, as essential modulators of the availability of this semi-essential amino acid for immune cells. We subsequently review well-established and novel findings on the functional impact of arginine biosynthetic and catabolic pathways on the main immune cell lineages. Finally, as arginine has emerged as a molecule impacting on a plethora of immune functions, we integrate key notions on how the disruption or perversion of arginine metabolism is implicated in pathologies ranging from infectious diseases to autoimmunity and cancer.

Keywords
  • Arginase
  • Arginase 1
  • Arginase 2
  • Arginine metabolism
  • Immunity
  • Immunometabolism
  • NOS
  • Nitric oxide synthase
Citation (ISO format)
MARTI LINDEZ, Adria-Arnau, REITH, Walter. Arginine-dependent immune responses. In: Cellular and molecular life sciences, 2021, vol. 78, n° 13, p. 5303–5324. doi: 10.1007/s00018-021-03828-4
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Article (Published version)
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Additional URL for this publicationhttps://link.springer.com/10.1007/s00018-021-03828-4
Journal ISSN1420-682X
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