Importin-7 mediates memory consolidation through regulation of nuclear translocation of training-activated MAPK in Drosophila.
basic_science · Level V
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- Record sourced from PubMed, PMID 26929354.
- Also identified by DOI 10.1073/pnas.1520401113 and PMC identifier 4801302.
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Abstract
Translocation of signaling molecules, MAPK in particular, from the cytosol to nucleus represents a universal key element in initiating the gene program that determines memory consolidation. Translocation mechanisms and their behavioral impact, however, remain to be determined. Here, we report that a highly conserved nuclear transporter, Drosophila importin-7 (DIM-7), regulates import of training-activated MAPK for consolidation of long-term memory (LTM). We show that silencing DIM-7 functions results in impaired LTM, whereas overexpression of DIM-7 enhances LTM. This DIM-7-dependent regulation of LTM is confined to a consolidation time window and in mushroom body neurons. Image data show that bidirectional alteration in DIM-7 expression results in proportional changes in the intensity of training-activated MAPK accumulated within the nuclei of mushroom body neurons during LTM consolidation. Such DIM-7-regulated nuclear accumulation of activated MAPK is observed only in the training specified for LTM induction and determines the amplitude, but not the time course, of memory consolidation.
Medical subject headings
- Avoidance Learning
- Cell Nucleus
- Drosophila Proteins
- Drosophila melanogaster
- Karyopherins
- MAP Kinase Signaling System
- Memory Consolidation
- Memory, Long-Term
- Mushroom Bodies