4.7 Article

Small ubiquitin-like modifier 2 (SUMO2) is critical for memory processes in mice

Journal

FASEB JOURNAL
Volume 34, Issue 11, Pages 14750-14767

Publisher

WILEY
DOI: 10.1096/fj.202000850RR

Keywords

knockout; LTP; memory impairment; posttranslational modification

Funding

  1. HHS \ NIH\ National Institute of Neurological Disorders and Stroke (NINDS) [NS081299]
  2. American Heart Association (AHA) [16GRNT30270003]

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Small ubiquitin-like modifier (SUMO1-3) conjugation (SUMOylation), a posttranslational modification, modulates almost all major cellular processes. Mounting evidence indicates that SUMOylation plays a crucial role in maintaining and regulating neural function, and importantly its dysfunction is implicated in cognitive impairment in humans. We have previously shown that simultaneously silencing SUMO1-3 expression in neurons negatively affects cognitive function. However, the roles of the individual SUMOs in modulating cognition and the mechanisms that link SUMOylation to cognitive processes remain unknown. To address these questions, in this study, we have focused on SUMO2 and generated a new conditionalSumo2knockout mouse line. We found that conditional deletion ofSumo2predominantly in forebrain neurons resulted in marked impairments in various cognitive tests, including episodic and fear memory. Our data further suggest that these abnormalities are attributable neither to constitutive changes in gene expression nor to alterations in neuronal morphology, but they involve impairment in dynamic SUMOylation processes associated with synaptic plasticity. Finally, we provide evidence that dysfunction on hippocampal-based cognitive tasks was associated with a significant deficit in the maintenance of hippocampal long-term potentiation inSumo2knockout mice. Collectively, these data demonstrate that protein conjugation by SUMO2 is critically involved in cognitive processes.

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