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E2-25K SUMOylation inhibits proteasome for cell death during cerebral ischemia/reperfusion. | LitMetric

E2-25K SUMOylation inhibits proteasome for cell death during cerebral ischemia/reperfusion.

Cell Death Dis

Global Research Laboratory, Department of Biological Science, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 151-747, Korea.

Published: December 2016

AI Article Synopsis

  • Cerebral ischemia/reperfusion (I/R) leads to brain damage, and the study highlights the role of the E2-25K enzyme in this process, particularly its SUMOylation during oxidative stress.
  • Disruption of E2-25K expression can protect neurons from death caused by oxygen/glucose deprivation and reoxygenation, while increased levels of E2-25K worsen those effects.
  • The research suggests that E2-25K contributes to brain injury during I/R by inhibiting proteasome activity, which is linked to its SUMOylation at a specific site under stress conditions.

Article Abstract

Cerebral ischemia/reperfusion (I/R) causes brain damage accompanied by ubiquitin accumulation and impairment of proteasome activity. In this study, we report that E2-25K, an E2-conjugating enzyme, is SUMOylated during oxidative stress and regulates cerebral I/R-induced damage. Knockdown of E2-25K expression protects against oxygen/glucose deprivation and reoxygenation (OGD/R)-induced neuronal cell death, whereas ectopic expression of E2-25K stimulates it. Compared with the control mice, cerebral infarction lesions and behavioral/neurological disorders are ameliorated in E2-25K knockout mice during middle cerebral artery occlusion and reperfusion. In particular, E2-25K is SUMOylated at Lys14 under oxidative stress, OGD/R and I/R to prompt cell death. Further, E2-25K downregulates the proteasome subunit S5a to impair proteasome complex and thus restrain proteasome activity under oxidative stress. This proteasome inhibitory activity of E2-25K is dependent on its SUMOylation. These results suggest that E2-25K has a crucial role in oxidative stress and cerebral I/R-induced damage through inhibiting proteasome via its SUMOylation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5261013PMC
http://dx.doi.org/10.1038/cddis.2016.428DOI Listing

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