Melatonin improves synapse development by PI3K/Akt signaling in a mouse model of autism spectrum disorder

Author:

Wang Luyi1,Xu Man12,Wang Yan1,Wang Feifei1,Deng Jing13,Wang Xiaoya14,Zhao Yu1,Liao Ailing15,Yang Feng67,Wang Shali1ORCID,Li Yingbo1ORCID

Affiliation:

1. Institute of Neuroscience, Department of Physiology, School of Basic Medical Science, Chongqing Medical University, Chongqing, China

2. Department of Pediatric, Chongqing University Fuling Hospital, Chongqing, China

3. Department of Neurosurgery, Xinqiao Hospital, Army Medical University, Chongqing, China

4. Department of Pathology, Affiliated Hospital of North Sichuan Medical College, Nanchong, Sichuan Province, China

5. NHC Key Laboratory of Birth Defects and Reproductive Health, Chongqing Population and Family Planning Science and Technology Research Institute, Chongqing, China

6. China National Clinical Research Center for Neurological Diseases, Beijing Tiantan Hospital, Capital Medical University, Beijing, China

7. Advanced Innovation Center for Human Brain Protection, Capital Medical University, Beijing, China

Abstract

Abstract JOURNAL/nrgr/04.03/01300535-202407000-00043/figure1/v/2023-11-20T171125Z/r/image-tiff Autism spectrum disorders are a group of neurodevelopmental disorders involving more than 1100 genes, including Ctnnd2 as a candidate gene. Ctnnd2 knockout mice, serving as an animal model of autism, have been demonstrated to exhibit decreased density of dendritic spines. The role of melatonin, as a neurohormone capable of effectively alleviating social interaction deficits and regulating the development of dendritic spines, in Ctnnd2 deletion-induced nerve injury remains unclear. In the present study, we discovered that the deletion of exon 2 of the Ctnnd2 gene was linked to social interaction deficits, spine loss, impaired inhibitory neurons, and suppressed phosphatidylinositol-3-kinase (PI3K)/protein kinase B (Akt) signal pathway in the prefrontal cortex. Our findings demonstrated that the long-term oral administration of melatonin for 28 days effectively alleviated the aforementioned abnormalities in Ctnnd2 gene-knockout mice. Furthermore, the administration of melatonin in the prefrontal cortex was found to improve synaptic function and activate the PI3K/Akt signal pathway in this region. The pharmacological blockade of the PI3K/Akt signal pathway with a PI3K/Akt inhibitor, wortmannin, and melatonin receptor antagonists, luzindole and 4-phenyl-2-propionamidotetralin, prevented the melatonin-induced enhancement of GABAergic synaptic function. These findings suggest that melatonin treatment can ameliorate GABAergic synaptic function by activating the PI3K/Akt signal pathway, which may contribute to the improvement of dendritic spine abnormalities in autism spectrum disorders.

Publisher

Medknow

Subject

Developmental Neuroscience

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