Superoxide dismutases (SODs) are necessary antioxidant enzymes that protect cells from reactive oxygen species (ROS). Decreased levels of SODs or mutations that affect their catalytic activity have serious phenotypic consequences. SODs perform their bio-protective role by converting superoxide into oxygen and hydrogen peroxide by cyclic oxidation and reduction reactions with the active site metal. Mutations of SODs can cause cancer of the lung, colon, and lymphatic system, as well as neurodegenerative diseases such as Parkinson’s disease and amyotrophic lateral sclerosis. While SODs have proven to be of significant biological importance since their discovery in 1968, the mechanistic nature of their catalytic function remains elusive. Extens...
Since it was first observed in late 1970s that human cancers often had decreased manganese superoxid...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...
Redox equilibria and the modulation of redox signalling play crucial roles in physiological processe...
Superoxide is the primary reactive oxygen species generated in the mitochondria. Manganese superoxid...
Superoxide is the primary reactive oxygen species generated in the mitochondria. Manganese superoxid...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
In normal state of a cell, endogenous antioxidant enzyme system maintains the level of reactive oxyg...
Abstract—Superoxide dismutases are an ubiquitous family of enzymes that function to efficiently cata...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
The loss and/or dysregulation of several cellular and mitochondrial antioxidants’ expression or enzy...
Increased understanding of the role of mitochondria under physiological and pathological conditions ...
Since it was first observed in late 1970s that human cancers often had decreased manganese superoxid...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...
Redox equilibria and the modulation of redox signalling play crucial roles in physiological processe...
Superoxide is the primary reactive oxygen species generated in the mitochondria. Manganese superoxid...
Superoxide is the primary reactive oxygen species generated in the mitochondria. Manganese superoxid...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important co...
In normal state of a cell, endogenous antioxidant enzyme system maintains the level of reactive oxyg...
Abstract—Superoxide dismutases are an ubiquitous family of enzymes that function to efficiently cata...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
The loss and/or dysregulation of several cellular and mitochondrial antioxidants’ expression or enzy...
Increased understanding of the role of mitochondria under physiological and pathological conditions ...
Since it was first observed in late 1970s that human cancers often had decreased manganese superoxid...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...
© 2015 JCBN. Fridovich identified CuZnSOD in 1969 and manganese superoxide dismutase (MnSOD) in 1973...