Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells

<p>Abstract</p> <p>Background</p> <p>Methionine Sulfoxide Reductase A (MsrA), an enzyme in the Msr gene family, is important in the cellular anti-oxidative stress defense mechanism. It acts by reducing the oxidized methionine sulfoxide in proteins back to sulfide and by...

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Main Authors: Lemanski Sharon L, Kochegarov Andrei A, Huang Xupei, Jia Yuanyuan, Webster Keith A, Zhang Chi, Jia Pingping, Lemanski Larry F
Format: Article
Language:English
Published: BMC 2011-06-01
Series:Journal of Biomedical Science
Online Access:http://www.jbiomedsci.com/content/18/1/46
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spelling doaj-fefcd8d842f842328d6d2f8c340164ea2020-11-24T22:01:28ZengBMCJournal of Biomedical Science1021-77701423-01272011-06-011814610.1186/1423-0127-18-46Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cellsLemanski Sharon LKochegarov Andrei AHuang XupeiJia YuanyuanWebster Keith AZhang ChiJia PingpingLemanski Larry F<p>Abstract</p> <p>Background</p> <p>Methionine Sulfoxide Reductase A (MsrA), an enzyme in the Msr gene family, is important in the cellular anti-oxidative stress defense mechanism. It acts by reducing the oxidized methionine sulfoxide in proteins back to sulfide and by reducing the cellular level of reactive oxygen species. MsrA, the only enzyme in the Msr gene family that can reduce the S-form epimers of methionine sulfoxide, has been located in different cellular compartments including mitochondria, cytosol and nuclei of various cell lines.</p> <p>Methods</p> <p>In the present study, we have isolated a truncated form of the MsrA transcript from cultured mouse embryonic stem cells and performed eGFP fusion protein expression, confocal microscopy and real time RT-PCR studies.</p> <p>Results</p> <p>Results show a different expression response of this truncated transcript to oxygen deprivation and reoxygenation treatments in stem cells, compared to the longer full length form. In addition, a different subcellular localization pattern was noted with most of the eGFP fusion protein detected in the cytosol.</p> <p>Conclusion</p> <p>One possibility for the existence of a truncated form of the MsrA transcripts could be that with a smaller protein size, yet retaining a GCWFG action site, this protein might have easier access to oxidize methionine residues on proteins than the longer form of the MsrA protein, thus having an evolutionary selection advantage. This research opens the door for further study on the role and function of the truncated MsrA embryonic mouse stem cells.</p> http://www.jbiomedsci.com/content/18/1/46
collection DOAJ
language English
format Article
sources DOAJ
author Lemanski Sharon L
Kochegarov Andrei A
Huang Xupei
Jia Yuanyuan
Webster Keith A
Zhang Chi
Jia Pingping
Lemanski Larry F
spellingShingle Lemanski Sharon L
Kochegarov Andrei A
Huang Xupei
Jia Yuanyuan
Webster Keith A
Zhang Chi
Jia Pingping
Lemanski Larry F
Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
Journal of Biomedical Science
author_facet Lemanski Sharon L
Kochegarov Andrei A
Huang Xupei
Jia Yuanyuan
Webster Keith A
Zhang Chi
Jia Pingping
Lemanski Larry F
author_sort Lemanski Sharon L
title Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
title_short Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
title_full Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
title_fullStr Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
title_full_unstemmed Identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
title_sort identification of a truncated form of methionine sulfoxide reductase a expressed in mouse embryonic stem cells
publisher BMC
series Journal of Biomedical Science
issn 1021-7770
1423-0127
publishDate 2011-06-01
description <p>Abstract</p> <p>Background</p> <p>Methionine Sulfoxide Reductase A (MsrA), an enzyme in the Msr gene family, is important in the cellular anti-oxidative stress defense mechanism. It acts by reducing the oxidized methionine sulfoxide in proteins back to sulfide and by reducing the cellular level of reactive oxygen species. MsrA, the only enzyme in the Msr gene family that can reduce the S-form epimers of methionine sulfoxide, has been located in different cellular compartments including mitochondria, cytosol and nuclei of various cell lines.</p> <p>Methods</p> <p>In the present study, we have isolated a truncated form of the MsrA transcript from cultured mouse embryonic stem cells and performed eGFP fusion protein expression, confocal microscopy and real time RT-PCR studies.</p> <p>Results</p> <p>Results show a different expression response of this truncated transcript to oxygen deprivation and reoxygenation treatments in stem cells, compared to the longer full length form. In addition, a different subcellular localization pattern was noted with most of the eGFP fusion protein detected in the cytosol.</p> <p>Conclusion</p> <p>One possibility for the existence of a truncated form of the MsrA transcripts could be that with a smaller protein size, yet retaining a GCWFG action site, this protein might have easier access to oxidize methionine residues on proteins than the longer form of the MsrA protein, thus having an evolutionary selection advantage. This research opens the door for further study on the role and function of the truncated MsrA embryonic mouse stem cells.</p>
url http://www.jbiomedsci.com/content/18/1/46
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