[Seminar] "Making input-specific synaptic changes last: from synaptic tagging mechanisms to cell-adhesion codes" by Dr. Mathieu Letellier, The Interdisciplinary Institute for Neuroscience (IINS), University of Bordeaux
Date
Location
Description
Dr. Mathieu Letellier
The Interdisciplinary Institute for Neuroscience (IINS), University of Bordeaux
Title: Making input-specific synaptic changes last: from synaptic tagging mechanisms to cell-adhesion codes
Abstract:
Neural circuits must remain plastic while preserving the identity and specificity of individual connections. A central question is therefore how activity-dependent changes at selected synapses are converted into molecular changes that persist over time. Beyond rapid modifications of synaptic proteins, long-term plasticity relies on gene expression, through both local translation and transcription.
I will present two studies exploring how these mechanisms support persistent, connection-specific changes across different timescales. First, I will show how activity-dependent local translation of synaptopodin, a key component of the spine apparatus, molecularly tags selected hippocampal synapses to support input-specific long-term homeostatic plasticity. I will then turn to the developing olivo-cerebellar circuit, where climbing fiber connectivity onto Purkinje Cells (PCs) is extensively refined during a critical developmental period to reach long-term stabilization of a single input. Using Patch-seq to link the functional properties of individual connections to transcriptional profiles, we find that developmental plasticity shapes gamma-protocadherins expression in PCs, suggesting that refinement leaves a persistent molecular signature. We propose that this transcriptional code contributes to the long-term stabilization and maintenance of connectivity established during development. Together, these studies illustrate how translation- and transcription-dependent mechanisms can convert plastic changes into persistent molecular states.
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