🏆 Foundational Paper

Adaptive disinhibitory gating by VIP interneurons permits associative learning.

Krabbe Sabine, Paradiso Enrica, d'Aquin Simon, Bitterman Yael, Courtin Julien, Xu Chun, Yonehara Keisuke, Markovic Milica, Müller Christian, Eichlisberger Tobias, Gründemann Jan, Ferraguti Francesco, Lüthi Andreas

📰 Nature neuroscience 📅 2019 📊 148 citations

Abstract

Learning drives behavioral adaptations necessary for survival. While plasticity of excitatory projection neurons during associative learning has been extensively studied, little is known about the contributions of local interneurons. Using fear conditioning as a model for associative learning, we found that behaviorally relevant, salient stimuli cause learning by tapping into a local microcircuit consisting of precisely connected subtypes of inhibitory interneurons. By employing deep-brain calcium imaging and optogenetics, we demonstrate that vasoactive intestinal peptide (VIP)-expressing interneurons in the basolateral amygdala are activated by aversive events and provide a mandatory disinhibitory signal for associative learning. Notably, VIP interneuron responses during learning are strongly modulated by expectations. Our findings indicate that VIP interneurons are a central component of a dynamic circuit motif that mediates adaptive disinhibitory gating to specifically learn about unexpected, salient events, thereby ensuring appropriate behavioral adaptations.

🔬 Techniques

✨ Fluorophores

DiD

🧪 Sample Preparation

🔬 Cell Lines

🏭 Microscope Brands

Coherent

💾 Data Repositories

🏛️ Research Organizations (ROR)

Affiliated research institutions:

📊 Figures

Figure 1

STDP of excitatory ( a ) and inhibitory ( b ) synaptic responses recorded in the same cells from slices of young mouse auditory cortex. ( Top and middle ) Examples of LTP and LTD induced by spike pair...

Figure 2

Development of cortical excitatory-inhibitory balance. ( a ) Balanced tone-evoked excitation and inhibition in adult rat primary auditory cortex. ( Top ) Frequency tuning curves for excitatory and inh...

Figure 3

Functional consequences of nucleus basalis pairing. ( a ) Experimental setup for electrophysiological studies. ( b ) Synaptic tuning curve before pairing. Note cotuning of excitatory and inhibitory tu...

Figure images are served from the NIH/NLM PubMed Central Open Access Subset or Europe PMC; copyright remains with the publishers and authors.

🏛️ Imaging Facility

🏛️ Friedrich Miescher Institute

💬 Discussion

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