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Neopterin: the pathway in the body

Neopterin is part of the pathway “Neopterin”. This page shows the whole pathway; the station of Neopterin is highlighted.

Where this laboratory value sits: Neopterin — oxidised form. When 7,8-dihydroneopterin gives up two hydrogen atoms, neopterin forms. Both forms reach the blood and are excreted in the urine. Source 2, 3

In brief

Neopterin is a small molecule derived from GTP metabolism that is formed mainly by macrophages. They release it after being stimulated by the immune messenger interferon-γ.

8 stations · 4 sources
ORYTriggerPterin pathway in the cellGTP cyclohydrolase IZincIFN-γ receptorPhosphatasesOxidationPTPS, SRNADPHinside the cellT cells, NK cellsimmune cellsInterferon-γimmune messengerMacrophagescavenger cell in tissueGTPbuilding block of every cellDihydroneopterin-TPwith three phosphate groups7,8-Dihydroneopterinwithout phosphate groupsNeopterinoxidised formTetrahydrobiopterinBH4, in other cells

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The pathway step by step

  1. T cells, NK cells → Interferon-γ Interferon-γ is one of these messengers. It binds to receptors on other cells and changes which genes are read there. Source 3, 2
  2. Interferon-γ → Macrophage IFN-γ receptor Macrophages and related cells carry the receptor for interferon-γ. After the signal, they read the gene for the enzyme GTP cyclohydrolase I much more strongly. Source 1, 2
  3. GTP → Dihydroneopterin-TP GTP cyclohydrolase I · Zinc GTP cyclohydrolase I opens the ring of GTP and reassembles it. This forms 7,8-dihydroneopterin triphosphate. The enzyme carries zinc in its active site. Source 4, 1
  4. Dihydroneopterin-TP → 7,8-Dihydroneopterin Phosphatases In macrophages, the next enzyme of the pathway is barely present. The phosphate groups are therefore cleaved off, and 7,8-dihydroneopterin remains. Source 1, 2
  5. 7,8-Dihydroneopterin → Neopterin Oxidation When 7,8-dihydroneopterin gives up two hydrogen atoms, neopterin forms. Both forms reach the blood and are excreted in the urine. Source 2, 3
  6. Dihydroneopterin-TP → Tetrahydrobiopterin PTPS, SR · NADPH In most other cells, two further enzymes convert the same starting material into tetrahydrobiopterin. BH4 is the cofactor of several hydroxylases, for example on the route to dopamine. Source 4

Cofactors in this pathway

Sources

  1. Werner ER, Werner-Felmayer G, Fuchs D et al. Tetrahydrobiopterin biosynthetic activities in human macrophages, fibroblasts, THP-1, and T 24 cells. GTP-cyclohydrolase I is stimulated by interferon-gamma, and 6-pyruvoyl tetrahydropterin synthase and sepiapterin reductase are constitutively present. J Biol Chem 1990 · PubMed 2154472
  2. Werner ER, Werner-Felmayer G, Fuchs D et al. Biochemistry and function of pteridine synthesis in human and murine macrophages. Pathobiology 1991 · PubMed 1883524
  3. Murr C, Widner B, Wirleitner B et al. Neopterin as a marker for immune system activation. Curr Drug Metab 2002 · PubMed 12003349
  4. Werner ER, Blau N, Thöny B. Tetrahydrobiopterin: biochemistry and pathophysiology. Biochem J 2011 · PubMed 21867484

Whole pathway: Neopterin

Related pathways

As of 2026-09-16. Draft written by Claude to schema v2; sources checked in PubMed; expert review pending
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