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Altered synaptic protein expression, aberrant spine morphology, and impaired spatial memory in Dlgap2 mutant mice, a genetic model of autism spectrum disorder

  • Ming Yen Hsieh
  • , Li Heng Tuan
  • , Ho Ching Chang
  • , Yu Chun Wang
  • , Chia Hsiang Chen
  • , Horng Tzer Shy
  • , Li Jen Lee*
  • , Susan Shur Fen Gau
  • *此作品的通信作者
  • National Taiwan University
  • National Tsing Hua University
  • Chi-Mei Medical Center

研究成果: 期刊稿件文章同行評審

11 引文 斯高帕斯(Scopus)

摘要

A microdeletion of approximately 2.4 Mb at the 8p23 terminal region has been identified in a Taiwanese autistic boy. Among the products transcribed/translated from genes mapped in this region, the reduction of DLGAP2, a postsynaptic scaffold protein, might be involved in the pathogenesis of autism spectrum disorder (ASD). DLGAP2 protein was detected in the hippocampus yet abolished in homozygous Dlgap2 knockout (Dlgap2 KO) mice. In this study, we characterized the hippocampal phenotypes in Dlgap2 mutant mice. Dlgap2 KO mice exhibited impaired spatial memory, indicating poor hippocampal function in the absence of DLGAP2. Aberrant expressions of postsynaptic proteins, including PSD95, SHANK3, HOMER1, GluN2A, GluR2, mGluR1, mGluR5, βCAMKII, ERK1/2, ARC, BDNF, were noticed in Dlgap2 mutant mice. Further, the spine density was increased in Dlgap2 KO mice, while the ratio of mushroom-type spines was decreased. We also observed a thinner postsynaptic density thickness in Dlgap2 KO mice at the ultrastructural level. These structural changes found in the hippocampus of Dlgap2 KO mice might be linked to impaired hippocampus-related cognitive functions such as spatial memory. Mice with Dlgap2 deficiency, showing signs of intellectual disability, a common co-occurring condition in patients with ASD, could be a promising animal model which may advance our understanding of ASD.

原文英語
頁(從 - 到)4779-4793
頁數15
期刊Cerebral Cortex
33
發行號8
DOIs
出版狀態已出版 - 04 04 2023

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