Redox regulation depends on the enzymatically controlled production and decay of redox active molecules. NADPH oxidases, superoxide dismutases, nitric oxide synthases, and others produce the redox active molecules superoxide, hydrogen peroxide, nitric oxide, and hydrogen sulfide. These react with target proteins inducing spatiotemporal modifications of cysteine residues within different signaling cascades. Thioredoxin family proteins are key regulators of the redox state of proteins. They regulate the formation and removal of oxidative modifications by specific thiol reduction and oxidation. All of these redox enzymes affect inflammatory processes and the innate and adaptive immune response. Interestingly, this regulation involves different...
Cellular oxidation–reduction (redox) systems, which encompass pro- and antioxidant molecules, are in...
© 2015 . Redox biological reactions are now accepted to bear the Janus faceted feature of promoting ...
AbstractRedox networks in the cell integrate signaling pathways that control metabolism, energetics,...
Redox regulation depends on the enzymatically controlled production and decay of redox active molecu...
Oxidative stress is defined as an imbalance beween the levels of reactive oxygen species (ROS) and a...
It is thought that excessive production of reactive oxygen species (ROS) can be a causal component i...
The production of various reactive oxidant species in excess of endogenous antioxidant defense mecha...
Energy metabolism and redox state are intrinsically linked. In order to mount an adequate immune res...
Abstract The production of various reactive oxidant species in excess of endogenous antioxidant defe...
Long-lasting activation of inflammation leads to chronic conditions and is particularly common in a...
Redox signaling is crucial for cells to maintain homeostasis. The goal of this research is to unders...
Oxidants are produced in physiological and pathological conditions. The production of reactive nitro...
Many studies reported that redox enzymes, particularly thioredoxin and peroxiredoxin, can be release...
Cellular oxidation–reduction (redox) systems, which encompass pro- and antioxidant molecules, are in...
© 2015 . Redox biological reactions are now accepted to bear the Janus faceted feature of promoting ...
AbstractRedox networks in the cell integrate signaling pathways that control metabolism, energetics,...
Redox regulation depends on the enzymatically controlled production and decay of redox active molecu...
Oxidative stress is defined as an imbalance beween the levels of reactive oxygen species (ROS) and a...
It is thought that excessive production of reactive oxygen species (ROS) can be a causal component i...
The production of various reactive oxidant species in excess of endogenous antioxidant defense mecha...
Energy metabolism and redox state are intrinsically linked. In order to mount an adequate immune res...
Abstract The production of various reactive oxidant species in excess of endogenous antioxidant defe...
Long-lasting activation of inflammation leads to chronic conditions and is particularly common in a...
Redox signaling is crucial for cells to maintain homeostasis. The goal of this research is to unders...
Oxidants are produced in physiological and pathological conditions. The production of reactive nitro...
Many studies reported that redox enzymes, particularly thioredoxin and peroxiredoxin, can be release...
Cellular oxidation–reduction (redox) systems, which encompass pro- and antioxidant molecules, are in...
© 2015 . Redox biological reactions are now accepted to bear the Janus faceted feature of promoting ...
AbstractRedox networks in the cell integrate signaling pathways that control metabolism, energetics,...