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ATP5O — SOD1
Text-mined interactions from Literome
Qin et al., FASEB J 2006
(Coronary Artery Disease) :
Essential
role for the Menkes
ATPase in activation of extracellular
superoxide dismutase : implication for vascular oxidative stress
Litvan et al., J Biol Chem 2006
(Pulmonary Edema) :
Beta-adrenergic receptor stimulation and adenoviral overexpression of
superoxide dismutase prevent the hypoxia mediated decrease in Na,
K-ATPase and alveolar fluid reabsorption
Khan et al., Redox Rep 2009
(Diabetes Mellitus, Experimental) :
The aim of this study was to investigate the
effect of a synthetic manganese porphyrin
SOD mimic and peroxynitrite scavenger, Mn ( III ) 5,10,15,20-tetrakis ( N-methylpyridinium-2-yl ) porphyrin ( MnTM-2-PyP ) on the expression of NHE and Na ( + ), K ( + )
-ATPase activity in the kidneys of streptozotocin (STZ) diabetic rats
Balk et al., Neurochem Res 2010
:
However, Na ( + ), K ( + )
-ATPase level decreased in striatum and cerebral cortex and the
SOD activity
increased in hippocampus and striatum
Kaneko et al., Basic Res Cardiol 1990
:
In the presence of xanthine + xanthine oxidase, Ca2+
ATPase activity was stimulated and this effect was
prevented by the addition of
superoxide dismutase
Kitao et al., Experientia 1983
:
However other reducing agents, alpha-tocopherol,
superoxide dismutase and catalase
had no effect on
ATPase activity
Guzman et al., J Clin Invest 1995
:
Interestingly,
superoxide dismutase prevented the inhibitory effects of NO on Na+/K ( + )
-ATPase activity, suggesting a role for peroxynitrite in this inhibition
Wei et al., Biochem Pharmacol 1994
:
However,
superoxide dismutase ( 500 U/mL ) and dithiothreitol blocked artemisinin-hemin or hemin
mediated ATPase inhibition significantly ( P < 0.001 )