Protein Information

ID 3501
Name MSRA
Synonyms Cytosolic methionine S sulfoxide reductase (Methionine sulfoxide reductase A3); MSRA; Methionine sulfoxide reductase A1; Methionine sulfoxide reductase A2; PMSR; Peptide Met(O) reductase; Peptide methionine sulfoxide reductase; Protein methionine S oxide reductase…

Compound Information

ID 1808
Name sulfoxide
CAS 5-[2-(octylsulfinyl)propyl]-1,3-benzodioxole

Reference

PubMed Abstract RScore(About this table)
19487311 Salmon AB, Perez VI, Bokov A, Jernigan A, Kim G, Zhao H, Levine RL, Richardson A: Lack of methionine sulfoxide reductase A in mice increases sensitivity to oxidative stress but does not diminish life span. FASEB J. 2009 Oct;23(10):3601-8. Epub 2009 Jun 1.
Methionine sulfoxide reductase A (MsrA) repairs oxidized methionine residues within proteins and may also function as a general antioxidant. Previous reports have suggested that modulation of MsrA in mice and mammalian cell culture can affect the accumulation of oxidized proteins and may regulate resistance to oxidative stress. Thus, under the oxidative stress theory of aging, these results would predict that MsrA regulates the aging process in mammals. We show here that MsrA (-/-) mice are more susceptible to oxidative stress induced by paraquat. Skin-derived fibroblasts do not express MsrA, but fibroblasts cultured from MsrA (-/-) mice were, nevertheless, also more susceptible to killing by various oxidative stresses. In contrast to previous reports, we find no evidence for neuromuscular dysfunction in MsrA (-/-) mice in either young adult or in older animals. Most important, we found no difference between MsrA (-/-) and control mice in either their median or maximum life span. Thus, our results show that MsrA regulates sensitivity to oxidative stress in mice but has no effect on aging, as determined by life span.
1(0,0,0,1)