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Declining Levels of Specialized Synaptic Surface Proteins in nNOS-Expressing Interneurons in Mice Treated Prenatally with Valproic Acid
Authors:Wang  Xiaona  Yang  Zhigang  Fang  Shuanfeng  Zhang  Yaodong  Guo  Jisheng  Gou  Lingshan
Affiliation:1.Henan Provincial Key Laboratory of Children’s Genetics and Metabolic Diseases, Henan Engineering Research Center of Childhood Neurodevelopment, Children’s Hospital Affiliated to Zhengzhou University, 33 Longhu Outer Circle Dong Road, Zhengzhou, 450018, Henan, China
;2.Department of Neurology, Children’s Hospital Affiliated to Zhengzhou University, 33 Longhu Outer Circle Dong Road, Zhengzhou, 450018, Henan, China
;3.Healthcare Department, Children’s Hospital Affiliated to Zhengzhou University, 33 Longhu Outer Circle Dong Road, Zhengzhou, 450018, Henan, China
;4.School of Basic Medical Sciences, Yantai Campus of Binzhou Medical University, 346 Guanhai Road, Laishan District, Yantai City, 264003, Shandong, China
;5.Center for Genetic Medicine, Xuzhou Maternity and Child Health Care Hospital, Xuzhou, China
;
Abstract:

Autism spectrum disorder (ASD) is a heterogeneous group of neurodevelopmental disorder characterized by impaired social interaction, and repetitive or restricted interests and behaviors. Membrane proteins are a significant part of the proteins in cell and play key functions in synaptic transmission. We have recently shown that neuronal nitric oxide synthase (nNOS) expression was reduced in the basolateral amygdala (BLA) of mice following postnatal valproic acid (VPA) exposure. In the current study, we utilized a label-free proteomics approach to identify and quantify surface protein expression in nNOS-positive interneurons between VPA-treated and control mice. Western blot was used to confirm the expression of selected membrane proteins. Our proteomics data revealed differentially expressed surface proteins in nNOS interneurons, e.g. Narp, AMPA-type glutamate (AMPA) receptor subunit GluA4 and Protein kinase C gamma (PKCγ), which were validated by Western blotting in mice treated with VPA. This work will pave the way for further elucidation of the mechanisms of these differentially membrane proteins in nNOS interneurons-medicated ASD.

Keywords:
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