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Mimicking age-associated Gadd45γ dysregulation results in memory impairments in young adult mice

  • David V.C. Brito
  • , Janina Kupke
  • , Kubra Gulmez Karaca
  • , Benjamin Zeuch
  • , Ana M.M. Oliveira

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Age-related memory loss is observed across multiple mammalian species and preferentially affects hippocampus-dependent memory. Memory impairments are characterized by accelerated decay of spatial memories. Nevertheless, the molecular mechanisms underlying these deficits are still largely unknown. Here, we investigated the expression and function of the growth arrest DNA damage (Gadd45) family during aging and cognition, respectively. We report that aging impairs the expression of Gadd45γ in the hippocampus of cognitively impaired male mice. Mimicking this decrease in young adult male mice led to age-like memory deficits in hippocampus-dependent memory tasks. Gadd45γ reduction impaired the activity of key components of the mitogen-activated protein kinase (MAPK) pathway (p38 and JNK) in mouse hippocampal cultures. Furthermore, we found that activation of downstream targets, such as ATF-2, c-Jun, and CREB (cAMP response element-binding protein), was disrupted. Finally, we showed that Gadd45γ is required for induction of key early- and late-response genes that have been associated with aging. Together, these findings indicate that Gadd45γ expression regulates cognitive abilities and synapse-to-nucleus communication and suggest Gadd45γ dysfunction as a potential mechanism contributing to age-related cognitive impairments.
Original languageEnglish
Pages (from-to)1197-1210
JournalJournal of Neuroscience
Volume40
Issue number6
DOIs
Publication statusPublished - 5 Feb 2020
Externally publishedYes

Funding

This work was supported by the Sonderforschungsbereich 1134 and an Emmy Noether Grant of the Deutsche Forchungsgemeinschaft to A.M.M.O. A.M.M.O. is a member of the Excellence Cluster CellNetworks at Heidelberg University. We thank I. Bünzli-Ehret for the preparation of primary hippocampal cultures, and Dr. Anna Hagenston Hertle for providing the calcium indicator used in the study, for helpful guidance during the calcium imaging analysis, and for critical comments to the manuscript. We also thank Dr. Priit Pruunsild for the luciferase reporter constructs and guidance with the assays. The authors declare no competing financial interests. Correspondence should be addressed to Ana M.M. Oliveira at [email protected].

Funders
Deutsche Forchungsgemeinschaft
Excellence Cluster CellNetworks at Heidelberg University

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