Msrb1 (methionine-R Reductase 1) Knock-Out Mice: Roles of Msrb1 in Redox Regulation and Identification of a Novel Selenoprotein Form
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Date
2009
Journal Title
Journal ISSN
Volume Title
Publisher
American Society for Biochemistry and Molecular Biology
Open Access Color
GOLD
Green Open Access
Yes
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Publicly Funded
No
Abstract
Protein oxidation has been linked to accelerated aging and is a contributing factor to many diseases. Methionine residues are particularly susceptible to oxidation, but the resulting mixture of methionine R-sulfoxide (Met-RO) and methionine S-sulfoxide (Met-SO) can be repaired by thioredoxin-dependent enzymes MsrB and MsrA, respectively. Here, we describe a knock-out mouse deficient in selenoprotein MsrB1, the main mammalian MsrB located in the cytosol and nucleus. In these mice, in addition to the deletion of 14-kDa MsrB1, a 5-kDa selenoprotein form was specifically removed. Further studies revealed that the 5-kDa protein occurred in both mouse tissues and human HEK 293 cells; was down-regulated by MsrB1 small interfering RNA, selenium deficiency, and selenocysteine tRNA mutations; and was immunoprecipitated and recognized by MsrB1 antibodies. Specific labeling with 75Se and mass spectrometry analyses revealed that the 5-kDa selenoprotein corresponded to the C-terminal sequence of MsrB1. The MsrB1 knock-out mice lacked both 5- and 14-kDa MsrB1 forms and showed reduced MsrB activity, with the strongest effect seen in liver and kidney. In addition, MsrA activity was decreased by MsrB1 deficiency. Liver and kidney of the MsrB1 knock-out mice also showed increased levels of malondialdehyde, protein carbonyls, protein methionine sulfoxide, and oxidized glutathione as well as reduced levels of free and protein thiols, whereas these parameters were little changed in other organs examined. Overall, this study established an important contribution of MsrB1 to the redox control in mouse liver and kidney and identified a novel form of this protein.
Description
Keywords
Liver, Accelerated aging, Methionine sulfoxide, Redox regulation, Small interfering RNA, HEK293 cells, 570, Protein Conformation, Molecular Sequence Data, Biophysics, 610, Kidney, Biochemistry, Protein Carbonylation, Mice, Selenium, HEK293 cells, Malondialdehyde, Animals, Humans, Amino Acid Sequence, Mice, Knockout, Mice, Inbred BALB C, Microfilament Proteins, Small interfering RNA, Glutathione, Oxidative Stress, Liver, Redox regulation, Methionine Sulfoxide Reductases, Dietary Supplements, and Structural Biology, Methionine sulfoxide, Oxidoreductases, Accelerated aging, Oxidation-Reduction
Fields of Science
0301 basic medicine, 03 medical and health sciences, 0303 health sciences
Citation
Fomenko, D. E., Novoselov, S. V., Natarajan, S. K., Lee, B. C., Koç, A., Carlson, B. A., Lee, T. H., Kim, H. Y., Hatfield, D. L. and Gladyshev, V. N. (2009). MsrB1 (methionine-R-sulfoxide reductase 1) knock-out mice: Roles of MsrB1 in redox regulation and identification of a novel selenoprotein form. Journal of Biological Chemistry, 284(9), 5986-5993. doi:10.1074/jbc.M805770200
WoS Q
Q2
Scopus Q
Q2

OpenCitations Citation Count
114
Source
Journal of Biological Chemistry
Volume
284
Issue
9
Start Page
5986
End Page
5993
PlumX Metrics
Citations
CrossRef : 93
Scopus : 114
PubMed : 68
Captures
Mendeley Readers : 67
SCOPUS™ Citations
114
checked on Apr 27, 2026
Web of Science™ Citations
106
checked on Apr 27, 2026
Page Views
618
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Downloads
440
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