| Literature DB >> 30891045 |
Gábor Sirokmány1,2, Miklós Geiszt1,2.
Abstract
Peroxidase enzymes can oxidize a multitude of substrates in diverse biological processes. According to the latest phylogenetic analysis, there are four major heme peroxidase superfamilies. In this review, we focus on certain members of the cyclooxygenase-peroxidase superfamily (also labeled as animal heme peroxidases) and their connection to specific NADPH oxidase enzymes which provide H2O2 for the one- and two-electron oxidation of various peroxidase substrates. The family of NADPH oxidases is a group of enzymes dedicated to the production of superoxide and hydrogen peroxide. There is a handful of known and important physiological functions where one of the seven known human NADPH oxidases plays an essential role. In most of these functions NADPH oxidases provide H2O2 for specific heme peroxidases and the concerted action of the two enzymes is indispensable for the accomplishment of the biological function. We discuss human and other metazoan examples of such cooperation between oxidases and peroxidases and analyze the biological importance of their functional interaction. We also review those oxidases and peroxidases where this kind of partnership has not been identified yet.Entities:
Keywords: NADPH oxidase; heme peroxidase; hydrogen peroxide; peroxidasin; reactive oxygen species
Mesh:
Substances:
Year: 2019 PMID: 30891045 PMCID: PMC6411640 DOI: 10.3389/fimmu.2019.00394
Source DB: PubMed Journal: Front Immunol ISSN: 1664-3224 Impact factor: 7.561
An overview of the peroxidase-oxidase co-operations discussed in detail in this paper.
| MPO | Nox2 | Neutrophil granulocytes, macrophages, peritoneal B lymphocytes | Production of antimicrobial hypochloric acid | Nox2: chronic granulomatous disease (CGD) ( |
| EPO | Nox2 | Eosinophil granulocytes | Production of antimicrobial hypobromous and hypothiocyanous acid | no evidence of disease ( |
| TPO | Duox2 | Thyroid gland | Oxidation of iodide ion during thyroid hormone synthesis | Duox2 or TPO: congenital hypothyreosis ( |
| LPO | Duox1, Duox2 | Exocrin glands, mucosal surfaces | Production of antimicrobial hypothiocyanate and hypoiodide | ? |
| Ovoperoxidase | Udx1 | Plasmamembrane, subcortical granules, fertilization envelope | Crosslinking and subsequent hardening of matrix molecules in the fertilization membrane | Ovoperoxidase or Udx1: increased probability of polyspermy ( |
| MLT-7 | BLI-3 (Ce-Duox1) | Hypodermis | Crosslinking of cuticle matrix molecules | BLI-3 or MLT7: developmental arrest, cuticle abnormalities ( |
| SKPO-1 | BLI-3 (Ce-Duox1) | Hypodermis | Maintaining normal cuticle, host defense | BLI-3 or SKPO-1: |
| HPX2 | NOX5 | Plasmodium infected Anopheles midgut epithelial cells | Nitration of Plasmodium ookinetes | Nox5 or HPX2: susceptibility to Plasmodium invasion ( |