A disynaptic basal ganglia connection to the inferior olive: potential for basal ganglia influence on cerebellar learning

Tom J.H. Ruigrok*, Xiaolu Wang, Erika Sabel-Goedknegt, Patrice Coulon, Zhenyu Gao

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

Recent studies have shown that the cerebellum and the basal ganglia are interconnected at subcortical levels. However, a subcortical basal ganglia connection to the inferior olive (IO), being the source of the olivocerebellar climbing fiber system, is not known. We have used classical tracing with CTb, retrograde transneuronal infection with wildtype rabies virus, conditional tracing with genetically modified rabies virus, and examination of material made available by the Allen Brain Institute, to study potential basal ganglia connections to the inferior olive in rats and mice. We show in both species that parvalbumin-positive, and therefore GABAergic, neurons in the entopeduncular nucleus, representing the rodent equivalent of the internal part of the globus pallidus, innervate a group of cells that surrounds the fasciculus retroflexus and that are collectively known as the area parafascicularis prerubralis. As these neurons supply a direct excitatory input to large parts of the inferior olivary complex, we propose that the entopeduncular nucleus, as a main output station of the basal ganglia, provides an inhibitory influence on olivary excitability. As such, this connection may influence olivary involvement in cerebellar learning and/or could be involved in transmission of reward properties that have recently been established for olivocerebellar signaling.

Original languageEnglish
Article number1176126
JournalFrontiers in Systems Neuroscience
Volume17
DOIs
Publication statusPublished - 5 May 2023

Bibliographical note

Funding Information:
This study was supported by the Dutch Ministry of Health, Welfare and Sports (ES-G and TR), WO VIDI grant VI.Vidi.192.008 (ZG and XW), NOW Klein grant OCENW. KLEIN. 007 (ZG), ERC-stg grant, 852869 (ZG and XW), and the CNRS and Aix-Marseille Université through UMR 7289 (PC).

Publisher Copyright:
Copyright © 2023 Ruigrok, Wang, Sabel-Goedknegt, Coulon and Gao.

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