Purkinje cell neurotransmission patterns cerebellar basket cells into zonal modules that are defined by distinct pinceau sizes

Author:

Zhou JoyORCID,Brown Amanda M.,Lackey Elizabeth P.,Arancillo Marife,Lin Tao,Sillitoe Roy V.ORCID

Abstract

AbstractRamón y Cajal proclaimed the neuron doctrine based on circuit features he exemplified using cerebellar basket cell projections. Basket cells form dense inhibitory plexuses that wrap Purkinje cell somata and terminate as pinceaux at the initial segment of axons. Here, we demonstrate that HCN1, Kv1.1, PSD95 and GAD67 unexpectedly mark patterns of basket cell pinceaux that map onto Purkinje cell functional zones. Using cell-specific genetic tracing with anAscl1CreERT2mouse conditional allele, we reveal that basket cell zones comprise different sizes of pinceaux. We tested whether Purkinje cells instruct the assembly of inhibitory projections into zones, as they do for excitatory afferents. Genetically silencing Purkinje cell neurotransmission blocks the formation of sharp Purkinje cell zones and disrupts excitatory axon patterning. The distribution of pinceaux into size-specific zones is eliminated without Purkinje cell output. Our data uncover the cellular and molecular diversity of a foundational synapse that revolutionized neuroscience.

Publisher

Cold Spring Harbor Laboratory

Reference120 articles.

1. The cloning of zebrin II reveals its identity with aldolase C;Development,1994

2. Estimating functional connectivity in an electrically coupled interneuron network;Proceedings of the National Academy of Sciences of the United States of America,2013

3. Ankyrin-Based Subcellular Gradient of Neurofascin, an Immunoglobulin Family Protein, Directs GABAergic Innervation at Purkinje Axon Initial Segment

4. Cerebellar cortical organization: a one-map hypothesis

5. Cerebellar Modules and Their Role as Operational Cerebellar Processing Units

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