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Autism candidate gene DIP2A regulates spine morphogenesis via acetylation of cortactin.

Authors :
Ma, Jun
Zhang, Lu-Qing
He, Zi-Xuan
He, Xiao-Xiao
Wang, Ya-Jun
Jian, You-Li
Wang, Xin
Zhang, Bin-Bin
Su, Ce
Lu, Jun
Huang, Bai-Qu
Zhang, Yu
Wang, Gui-Yun
Guo, Wei-Xiang
Qiu, De-Lai
Mei, Lin
Xiong, Wen-Cheng
Zheng, Yao-Wu
Zhu, Xiao-Juan
Source :
PLoS Biology. 10/10/2019, Vol. 17 Issue 10, p1-26. 26p. 5 Color Photographs, 1 Diagram, 1 Graph.
Publication Year :
2019

Abstract

Dendritic spine development is crucial for the establishment of excitatory synaptic connectivity and functional neural circuits. Alterations in spine morphology and density have been associated with multiple neurological disorders. Autism candidate gene disconnected-interacting protein homolog 2 A (DIP2A) is known to be involved in acetylated coenzyme A (Ac-CoA) synthesis and is primarily expressed in the brain regions with abundant pyramidal neurons. However, the role of DIP2A in the brain remains largely unknown. In this study, we found that deletion of Dip2a in mice induced defects in spine morphogenesis along with thin postsynaptic density (PSD), and reduced synaptic transmission of pyramidal neurons. We further identified that DIP2A interacted with cortactin, an activity-dependent spine remodeling protein. The binding activity of DIP2A-PXXP motifs (P, proline; X, any residue) with the cortactin-Src homology 3 (SH3) domain was critical for maintaining the level of acetylated cortactin. Furthermore, Dip2a knockout (KO) mice exhibited autism-like behaviors, including excessive repetitive behaviors and defects in social novelty. Importantly, acetylation mimetic cortactin restored the impaired synaptic transmission and ameliorated repetitive behaviors in these mice. Altogether, our findings establish an initial link between DIP2A gene variations in autism spectrum disorder (ASD) and highlight the contribution of synaptic protein acetylation to synaptic processing. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15449173
Volume :
17
Issue :
10
Database :
Academic Search Index
Journal :
PLoS Biology
Publication Type :
Academic Journal
Accession number :
139041497
Full Text :
https://doi.org/10.1371/journal.pbio.3000461