Literature DB >> 26449752

Deletion of Methionine Sulfoxide Reductase A Does Not Affect Atherothrombosis but Promotes Neointimal Hyperplasia and Extracellular Signal-Regulated Kinase 1/2 Signaling.

Paula J Klutho1, Steven M Pennington1, Jason A Scott1, Katina M Wilson1, Sean X Gu1, Prakash Doddapattar1, Litao Xie1, Ashlee N Venema1, Linda J Zhu1, Anil K Chauhan1, Steven R Lentz1, Isabella M Grumbach2.   

Abstract

OBJECTIVE: Emerging evidence suggests that methionine oxidation can directly affect protein function and may be linked to cardiovascular disease. The objective of this study was to define the role of the methionine sulfoxide reductase A (MsrA) in models of vascular disease and identify its signaling pathways. APPROACH AND
RESULTS: MsrA was readily identified in all layers of the vascular wall in human and murine arteries. Deletion of the MsrA gene did not affect atherosclerotic lesion area in apolipoprotein E-deficient mice and had no significant effect on susceptibility to experimental thrombosis after photochemical injury. In contrast, the neointimal area after vascular injury caused by complete ligation of the common carotid artery was significantly greater in MsrA-deficient than in control mice. In aortic vascular smooth muscle cells lacking MsrA, cell proliferation was significantly increased because of accelerated G1/S transition. In parallel, cyclin D1 protein and cdk4/cyclin D1 complex formation and activity were increased in MsrA-deficient vascular smooth muscle cell, leading to enhanced retinoblastoma protein phosphorylation and transcription of E2F. Finally, MsrA-deficient vascular smooth muscle cell exhibited greater activation of extracellular signal-regulated kinase 1/2 that was caused by increased activity of the Ras/Raf/mitogen-activated protein kinase signaling pathway.
CONCLUSIONS: Our findings implicate MsrA as a negative regulator of vascular smooth muscle cell proliferation and neointimal hyperplasia after vascular injury through control of the Ras/Raf/mitogen-activated protein kinase kinase/extracellular signal-regulated kinase 1/2 signaling pathway.
© 2015 American Heart Association, Inc.

Entities:  

Keywords:  ERK pathway; methionine sulfoxide reductase; neointima; oxidation-reduction; proliferation

Mesh:

Substances:

Year:  2015        PMID: 26449752      PMCID: PMC4662651          DOI: 10.1161/ATVBAHA.115.305857

Source DB:  PubMed          Journal:  Arterioscler Thromb Vasc Biol        ISSN: 1079-5642            Impact factor:   8.311


  66 in total

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  4 in total

1.  Loss of methionine sulfoxide reductases increases resistance to oxidative stress.

Authors:  Lo Lai; Junhui Sun; Sreya Tarafdar; Chengyu Liu; Elizabeth Murphy; Geumsoo Kim; Rodney L Levine
Journal:  Free Radic Biol Med       Date:  2019-10-10       Impact factor: 7.376

2.  Protein methionine oxidation augments reperfusion injury in acute ischemic stroke.

Authors:  Sean X Gu; Ilya O Blokhin; Katina M Wilson; Nirav Dhanesha; Prakash Doddapattar; Isabella M Grumbach; Anil K Chauhan; Steven R Lentz
Journal:  JCI Insight       Date:  2016-05-19

3.  Novel Findings From a Metabolomics Study of Left Ventricular Diastolic Function: The Bogalusa Heart Study.

Authors:  Alexander C Razavi; Lydia A Bazzano; Jiang He; Camilo Fernandez; Seamus P Whelton; Marie Krousel-Wood; Shengxu Li; Jovia L Nierenberg; Mengyao Shi; Changwei Li; Xuenan Mi; Jason Kinchen; Tanika N Kelly
Journal:  J Am Heart Assoc       Date:  2020-01-29       Impact factor: 5.501

4.  Defective protein repair under methionine sulfoxide A deletion drives autophagy and ARE-dependent gene transcription.

Authors:  Steven M Pennington; Paula R Klutho; Litao Xie; Kim Broadhurst; Olha M Koval; Michael L McCormick; Douglas R Spitz; Isabella M Grumbach
Journal:  Redox Biol       Date:  2018-04-03       Impact factor: 11.799

  4 in total

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