نتایج جستجو برای: superoxide dismutases

تعداد نتایج: 33659  

Journal: :The Biochemical journal 1977
F Lavelle M E McAdam E M Fielden P B Roberts

The mechanism of the enzymic reaction of an iron-containing superoxide dismutase purified from the marine bacterium Photobacterium leiognathi was studied by using pulse radiolysis. Measurements of activity were done with two different preparations of enzyme containing either 1.6 or 1.15 g-atom of iron/mol. In both cases, identical values of the second-order rate constant for reaction between su...

2010
Martin Weinberger Ana Mesquita Timothy Carroll Laura Marks Hui Yang Zhaojie Zhang Paula Ludovico William C. Burhans

Inhibition of growth signaling pathways protects against aging and age-related diseases in parallel with reduced oxidative stress. The relationships between growth signaling, oxidative stress and aging remain unclear. Here we report that in Saccharomyces cerevisiae, alterations in growth signaling pathways impact levels of superoxide anions that promote chronological aging and inhibit growth ar...

Journal: :Current opinion in chemical biology 2004
Anne-Frances Miller

Protection from oxidative damage is sufficiently important that biology has evolved three independent enzymes for hastening superoxide dismutation: the Cu- and Zn-containing superoxide dismutases (Cu,Zn-SODs), the SODs that are specific for Fe or Mn or function with either of the two (Fe-SODs, Mn-SODs or Fe/Mn-SODs), and the SODs that use Ni (Ni-SODs). Despite the overwhelming similarities betw...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2006
Kristine M Robinson Michael S Janes Mariana Pehar Jeffrey S Monette Meredith F Ross Tory M Hagen Michael P Murphy Joseph S Beckman

The putative oxidation of hydroethidine (HE) has become a widely used fluorescent assay for the detection of superoxide in cultured cells. By covalently joining HE to a hexyl triphenylphosphonium cation (Mito-HE), the HE moiety can be targeted to mitochondria. However, the specificity of HE and Mito-HE for superoxide in vivo is limited by autooxidation as well as by nonsuperoxide-dependent cell...

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