Pontomesencephalic Tegmental Afferents to VTA Non-dopamine Neurons Are Necessary for Appetitive Pavlovian Learning

Hau Jie Yau, Dong V. Wang, Jen Hui Tsou, Yi Fang Chuang, Billy T. Chen, Karl Deisseroth, Satoshi Ikemoto, Antonello Bonci*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

27 Scopus citations

Abstract

The ventral tegmental area (VTA) receives phenotypically distinct innervations from the pedunculopontine tegmental nucleus (PPTg). While PPTg-to-VTA inputs are thought to play a critical role in stimulus-reward learning, direct evidence linking PPTg-to-VTA phenotypically distinct inputs in the learning process remains lacking. Here, we used optogenetic approaches to investigate the functional contribution of PPTg excitatory and inhibitory inputs to the VTA in appetitive Pavlovian conditioning. We show that photoinhibition of PPTg-to-VTA cholinergic or glutamatergic inputs during cue presentation dampens the development of anticipatory approach responding to the food receptacle during the cue. Furthermore, we employed in vivo optetrode recordings to show that photoinhibition of PPTg cholinergic or glutamatergic inputs significantly decreases VTA non-dopamine (non-DA) neural activity. Consistently, photoinhibition of VTA non-DA neurons disrupts the development of cue-elicited anticipatory approach responding. Taken together, our study reveals a crucial regulatory mechanism by PPTg excitatory inputs onto VTA non-DA neurons during appetitive Pavlovian conditioning.

Original languageEnglish
Pages (from-to)2699-2710
Number of pages12
JournalCell Reports
Volume16
Issue number10
DOIs
StatePublished - 1 Sep 2016

Keywords

  • PPTg
  • VTA
  • VTA non-DA neurons
  • appetitive Pavlovian conditioning
  • cholinergic input
  • glutamatergic input
  • pedunculopontine tegmental nucleus
  • ventral tegmental area

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