Axonal RNA localization is essential for long-term memory
Abstract
Abstract Localization of mRNAs to neuronal terminals, coupled to local translation, has emerged as a prevalent mechanism controlling the synaptic proteome. However, the physiological regulation and function of this process in the context of mature in vivo memory circuits has remained unclear. Here, we combined synaptosome RNA profiling with whole brain high-resolution imaging to uncover mRNAs with different localization patterns in the axons of Drosophila Mushroom Body memory neurons, some exhibiting regionalized, input-dependent, recruitment along axons. By integrating transcriptome-wide binding approaches and functional assays, we show that the conserved Imp RNA binding protein controls the transport of mRNAs to Mushroom Body axons and characterize a mutant in which this transport is selectively impaired. Using this unique mutant, we demonstrate that axonal mRNA localization is required for long-term, but not short-term, behavioral memory. This work uncovers circuit-dependent mRNA targeting in vivo and demonstrates the importance of local RNA regulation in memory consolidation.
Article Details
Authors (15)
Bruna R. de Queiroz
Hiba Laghrissi
Seetha Rajeev
Lauren Blot
Fabienne De Graeve
Marine Dehecq
Martina Hallegger
Ugur Dag
Picower Institute for Learning and Memory and HHMI, Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology
Marion Dunoyer de Segonzac
Mirana Ramialison
Murdoch Children’s Research Institute, Novo Nordisk Foundation Centre for Regenerative Medicine (reNEW) and Department of Paediatrics, The University of Melbourne
Chantal Cazevieille
Université Montpellier, INSERM U1298, Institute for Neurosciences of Montpellier
Krystyna Keleman
Jernej Ule
Arnaud Hubstenberger
Florence Besse