Mdm2‐mediated ubiquitination of PKCβII is responsible for insulin‐induced heterologous desensitization of dopamine D3 receptor

Author:

Zeng Xingyue1,Wu ChengYan1,Cao Yongkai2,Li Huijun3,Zhang Xiaohan1ORCID

Affiliation:

1. School of Pharmaceutical Sciences Guizhou University Guiyang China

2. Department of Neurology, Institute of Translational Medicine The First Affiliated Hospital of Shenzhen University China

3. Department of Pharmaceuticals People's Hospital of Zunyi City Bo Zhou District China

Abstract

The insulin and dopaminergic systems in the brain are associated with schizophrenia and Parkinson's disease with respect to etiology and treatment. The present study investigated the crosstalk between the insulin receptor (IR) and dopamine receptor and found that insulin stimulation selectively inhibits signaling of D3R in a PKCβII‐dependent manner. Upon insulin stimulation, E3 ligase enzyme Mdm2 moves out of the nucleus to ubiquitinate PKCβII. Subsequently, ubiquitinated PKCβII translocates to the cell membrane and interacts with D3R in a phosphorylation‐dependent manner at S229/257, resulting in the attenuation of D3R signaling and initiating clathrin‐mediated endocytosis and downregulation. Considering that both IR and D3R are closely related to some neuropsychosis, this study could provide new molecular insight into the etiology of the disorder.

Funder

Guizhou University

National Natural Science Foundation of China

Publisher

Wiley

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