Ontify
⌘
S
⌘
S
ROS and RNS Production in Phagocytes - Ontify
Share
ROS and RNS Production in Phagocytes
Instance of the biological pathway in Homo sapiens with Reactome ID (R-HSA-1222556).
Statements about
ROS and RNS Production in Phagocytes
Instance Of
Biological Pathway
Cell Redox Homeostasis
Part Of
Innate Immune System
Has Part(s)
32 items
Superoxide and Nitric Oxide React to Peroxynitrite
Nitric Oxide Synthase (NOS) Produces Nitric Oxide (NO)
NRAMP1 Transports Divalent Metal Ions Across Phagosomal Membranes of Macrophages
Nitric Oxide Oxidizes to Nitrosyl Ion
Nitric Oxide Diffuses Into the Phagosome
Nitric Oxide Enters the Bacterium
Intraphagosomal pH Is Lowered to 5 by V-ATPase
Protonation of Superoxide
Hydroperoxyl Enters the Bacterium
Peroxynitrite Enters the Bacterium
Glutathione Scavenges Nitrosyl
Nitric Oxide and O2 React to NO2
NO and NO2 React to N2O3
N2O3 Diffuses to Phagosome
Nitrite Ion and HNO2 Form a Conjugated Acid-Base Pair
HNO2 Produces N2O3
N2O3 Enters Bacteria
S-Nitrosylation of Cysteine Residues in Proteins by N2O3
NOX2 Generates Superoxide Anion From Oxygen
HV1-Mediated H+ Transfer
Superoxide and Nitric Oxide React to Peroxynitrite in the Phagosome
Peroxynitrite and Carbon Dioxide React to Nitrosoperoxycarbonate
Peroxynitrite Oxidizes Cys Residues
Peroxynitrite Oxidizes Peptide-Methionine Residues
Superoxide Anion Dismutates to H2O2
H2O2 Oxidizes Cys Residues to Form Cys-Sulfenic Acid
Hydrogen Peroxide Enters the Bacterium
Hydrogen Peroxide and Fe2+ React to Hydroxyl, Hydroxide and Fe3+
Hydroxyl-Initiated Lipid Peroxidation
Hydroxyl Radical Reacts with the Base and Sugar Moiety of DNA
Superoxide Anion Reacts with Fe-S Cluster
Events Associated with Phagocytolytic Activity of PMN Cells
Exact Match
https://identifiers.org/reactome:R-H ...