نتایج جستجو برای: msra

تعداد نتایج: 346  

Journal: :Molecular Vision 2009
LA Brennan W Lee T Cowell F Giblin M Kantorow

PURPOSE Considerable evidence indicates a role for methionine sulfoxide reductase A (MsrA) in lens cell resistance to oxidative stress through its maintenance of mitochondrial function. Correspondingly, increased protein methionine sulfoxide (PMSO) is associated with lens aging and human cataract formation, suggesting that loss of MsrA activity is associated with this disease. Here we tested th...

Journal: :Microbiology 2001
V K Singh J Moskovitz B J Wilkinson R K Jayaswal

Previous studies employing two-dimensional gel electrophoresis and N-terminal protein sequencing have shown elevated synthesis of the enzyme methionine sulfoxide reductase (MsrA) in Staphylococcus aureus in response to cell-wall-active antibiotics. In the present study, the S. aureus msrA gene was cloned, overexpressed, purified as His-tagged MsrA and shown to have methionine sulfoxide reductas...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 1998
J Moskovitz E Flescher B S Berlett J Azare J M Poston E R Stadtman

The yeast peptide-methionine sulfoxide reductase (MsrA) was overexpressed in a Saccharomyces cerevisiae null mutant of msrA by using a high-copy plasmid harboring the msrA gene and its promoter. The resulting strain had about 25-fold higher MsrA activity than its parent strain. When exposed to either hydrogen peroxide, paraquat, or 2,2'-azobis-(2-amidinopropane) dihydrochloride treatment, the M...

Journal: :The Biochemical journal 2003
Stéphanie Vougier Jean Mary Bertrand Friguet

Proteins are sensitive to reactive oxygen species, and the accumulation of oxidized proteins has been implicated in the aging process and in other age-related pathologies. In proteins, methionine residues are especially sensitive to oxidation, leading to S - and R -methionine sulphoxide diastereoisomers, the reversion of which is achieved by the peptide methionine sulphoxide reductases MsrA and...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2003
Ingeborg Hanbauer Emily S Boja Jackob Moskovitz

Methionine sulfoxide reductase A (MsrA) maintains the function of many proteins by reversing oxidation of methionine residues. Lack of this repair mechanism very likely increases aging-related disease susceptibility. In Saccharomyces cerevisiae, disruption of the msrA gene increases free and protein-bound methionine sulfoxide and decreases cell viability. Although the underlying mechanisms in t...

Journal: :Journal of bacteriology 2003
Alexander B Taylor David M Benglis Subramanian Dhandayuthapani P John Hart

Peptide methionine sulfoxide reductase (MsrA) repairs oxidative damage to methionine residues arising from reactive oxygen species and reactive nitrogen intermediates. MsrA activity is found in a wide variety of organisms, and it is implicated as one of the primary defenses against oxidative stress. Disruption of the gene encoding MsrA in several pathogenic bacteria responsible for infections i...

Journal: :American journal of physiology. Heart and circulatory physiology 2011
Hang Zhao Junhui Sun Anne M Deschamps Geumsoo Kim Chengyu Liu Elizabeth Murphy Rodney L Levine

Methionine sulfoxide reductase A (MsrA) catalytically scavenges reactive oxygen species and also repairs oxidized methionines in proteins. Increasing MsrA protects cells and organs from a variety of oxidative stresses while decreasing MsrA enhances damage, but the mechanisms of action have not been elucidated. A single gene encodes MsrA of which ∼25% is targeted to the mitochondria, a major sit...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2004
Marc Kantorow John R Hawse Tracy L Cowell Sonia Benhamed Gresin O Pizarro Venkat N Reddy J F Hejtmancik

Age-related cataract, an opacity of the eye lens, is the leading cause of visual impairment in the elderly, the etiology of which is related to oxidative stress damage. Oxidation of methionine to methionine sulfoxide is a major oxidative stress product that reaches levels as high as 60% in cataract while being essentially absent from clear lenses. Methionine oxidation results in loss of protein...

2015
JennaLynn Hunnicut Yuhong Liu Arlan Richardson Adam B. Salmon Krisztian Stadler

There is growing evidence that oxidative stress plays an integral role in the processes by which obesity causes type 2 diabetes. We previously identified that mice lacking the protein oxidation repair enzyme methionine sulfoxide reductase A (MsrA) are particularly prone to obesity-induced insulin resistance suggesting an unrecognized role for this protein in metabolic regulation. The goals of t...

Journal: :Acta biochimica et biophysica Sinica 2012
Hwa-Young Kim

Methionine sulfoxide reductases A and B (MsrA and MsrB) have been known to be thioredoxin (Trx)-dependent enzymes that catalyze the reduction of methionine sulfoxide in a stereospecific manner. This work reports that glutaredoxin, another major thiol-disulfide oxidoreductase, can serve as a reductant for both MsrA and MsrB. Glutaredoxins efficiently reduced 1-Cys MsrA lacking a resolving Cys, w...

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