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MHC class I in dopaminergic neurons suppresses relapse to reward seeking.


ABSTRACT: Major histocompatibility complex class I (MHCI) is an important immune protein that is expressed in various brain regions, with its deficiency leading to extensive synaptic transmission that results in learning and memory deficits. Although MHCI is highly expressed in dopaminergic neurons, its role in these neurons has not been examined. We show that MHCI expressed in dopaminergic neurons plays a key role in suppressing reward-seeking behavior. In wild-type mice, cocaine self-administration caused persistent reduction of MHCI specifically in dopaminergic neurons, which was accompanied by enhanced glutamatergic synaptic transmission and relapse to cocaine seeking. Functional MHCI knockout promoted this addictive phenotype for cocaine and a natural reward, namely, sucrose. In contrast, wild-type mice overexpressing a major MHCI gene (H2D) in dopaminergic neurons showed suppressed cocaine seeking. These results show that persistent cocaine-induced reduction of MHCI in dopaminergic neurons is necessary for relapse to cocaine seeking.

SUBMITTER: Murakami G 

PROVIDER: S-EPMC5851664 | biostudies-literature | 2018 Mar

REPOSITORIES: biostudies-literature

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MHC class I in dopaminergic neurons suppresses relapse to reward seeking.

Murakami Gen G   Edamura Mitsuhiro M   Furukawa Tomonori T   Kawasaki Hideya H   Kosugi Isao I   Fukuda Atsuo A   Iwashita Toshihide T   Nakahara Daiichiro D  

Science advances 20180314 3


Major histocompatibility complex class I (MHCI) is an important immune protein that is expressed in various brain regions, with its deficiency leading to extensive synaptic transmission that results in learning and memory deficits. Although MHCI is highly expressed in dopaminergic neurons, its role in these neurons has not been examined. We show that MHCI expressed in dopaminergic neurons plays a key role in suppressing reward-seeking behavior. In wild-type mice, cocaine self-administration caus  ...[more]

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