The elusive transcriptional memory trace

Author:

Gil-Marti Beatriz12,Barredo Celia G1,Pina-Flores Sara1,Trejo Jose Luis3,Turiegano Enrique2,Martin Francisco A1

Affiliation:

1. Spanish National Research Council (CSIC) Molecular Physiology of Behavior Laboratory, Department of Molecular, Cellular and Developmental Neurobiology, Cajal Institute, , 28002 Madrid, Spain

2. Autonomous University of Madrid Department of Biology, , 28049 Madrid, Spain

3. Neurogenesis of the Adult Animal Laboratory . Department of Translational Neuroscience, Cajal Institute, Spanish National Research Council (CSIC), 28049, Madrid, Spain

Abstract

Abstract Memory is the brain faculty to store and remember information. It is a sequential process in which four different phases can be distinguished: encoding or learning, consolidation, storage and reactivation. Since the discovery of the first Drosophila gene essential for memory formation in 1976, our knowledge of its mechanisms has progressed greatly. The current view considers the existence of engrams, ensembles of neuronal populations whose activity is temporally coordinated and represents the minimal correlate of experience in brain circuits. In order to form and maintain the engram, protein synthesis and, probably, specific transcriptional program(s) is required. The immediate early gene response during learning process has been extensively studied. However, a detailed description of the transcriptional response for later memory phases was technically challenging. Recent advances in transcriptomics have allowed us to tackle this biological problem. This review summarizes recent findings in this field, and discusses whether or not it is possible to identify a transcriptional trace for memory.

Publisher

Oxford University Press (OUP)

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