A genetically defined insula-brainstem circuit selectively controls motivational vigor.

Deng, Hanfei; Xiao, Xiong; Yang, Tao; Ritola, Kimberly; Hantman, Adam; Li, Yulong; Huang, Z Josh; Li, Bo · Cell · 2021

basic_science · Level V

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Abstract

The anterior insular cortex (aIC) plays a critical role in cognitive and motivational control of behavior, but the underlying neural mechanism remains elusive. Here, we show that aIC neurons expressing Fezf2 (aIC<sup>Fezf2</sup>), which are the pyramidal tract neurons, signal motivational vigor and invigorate need-seeking behavior through projections to the brainstem nucleus tractus solitarii (NTS). aIC<sup>Fezf2</sup> neurons and their postsynaptic NTS neurons acquire anticipatory activity through learning, which encodes the perceived value and the vigor of actions to pursue homeostatic needs. Correspondingly, aIC → NTS circuit activity controls vigor, effort, and striatal dopamine release but only if the action is learned and the outcome is needed. Notably, aIC<sup>Fezf2</sup> neurons do not represent taste or valence. Moreover, aIC → NTS activity neither drives reinforcement nor influences total consumption. These results pinpoint specific functions of aIC → NTS circuit for selectively controlling motivational vigor and suggest that motivation is subserved, in part, by aIC's top-down regulation of dopamine signaling.

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