Histone Deacetylase Inhibition Restores Behavioral and Synaptic Function in a Mouse Model of 16p11.2 Deletion

被引:8
作者
Wang, Wei [1 ]
Tan, Tao [1 ]
Cao, Qing [1 ]
Zhang, Freddy [1 ]
Rein, Benjamin [1 ]
Duan, Wei-Ming [1 ]
Yan, Zhen [1 ]
机构
[1] SUNY Buffalo, Jacobs Sch Med & Biomed Sci, Dept Physiol & Biophys, Buffalo, NY USA
基金
美国国家卫生研究院;
关键词
autism; behavior; 16p11; 2; deletion; histone deacetylase; E; I balance; DEFICITS; CORTEX; GENES; SHANK; MICE;
D O I
10.1093/ijnp/pyac048
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background Microdeletion of the human 16p11.2 gene locus confers risk for autism spectrum disorders and intellectual disability. How 16p11.2 deletion is linked to these neurodevelopmental disorders and whether there are treatment avenues for the manifested phenotypes remain to be elucidated. Emerging evidence suggests that epigenetic aberrations are strongly implicated in autism. Methods We performed behavioral and electrophysiological experiments to examine the therapeutic effects of epigenetic drugs in transgenic mice carrying 16p11.2 deletion (16p11(del/+)). Results We found that 16p11(del/+) mice exhibited a significantly reduced level of histone acetylation in the prefrontal cortex (PFC). A short (3-day) treatment with class I histone deacetylase (HDAC) inhibitor MS-275 or Romidepsin led to the prolonged (3-4 weeks) rescue of social and cognitive deficits in 16p11(del/+) mice. Concomitantly, MS-275 treatment reversed the hypoactivity of PFC pyramidal neurons and the hyperactivity of PFC fast-spiking interneurons. Moreover, the diminished N-methyl-D-aspartate (NMDA) receptor-mediated synaptic currents and the elevated GABA(A) receptor-mediated synaptic currents in PFC pyramidal neurons of 16p11(del/+) mice were restored to control levels by MS-275 treatment. Conclusions Our results suggest that HDAC inhibition provides a highly effective therapeutic strategy for behavioral deficits and excitation/inhibition imbalance in 16p11(del/+) mice, likely via normalization of synaptic function in the PFC.
引用
收藏
页码:877 / 889
页数:13
相关论文
共 51 条
[1]   Hyperactivity and male-specific sleep deficits in the 16p11.2 deletion mouse model of autism [J].
Angelakos, Christopher C. ;
Watson, Adam J. ;
O'Brien, W. Timothy ;
Krainock, Kyle S. ;
Nickl-Jockschat, Thomas ;
Abel, Ted .
AUTISM RESEARCH, 2017, 10 (04) :572-584
[2]   Increased Excitation-Inhibition Ratio Stabilizes Synapse and Circuit Excitability in Four Autism Mouse Models [J].
Antoine, Michelle W. ;
Langberg, Tomer ;
Schnepel, Philipp ;
Feldman, Daniel E. .
NEURON, 2019, 101 (04) :648-+
[3]   Reciprocal Effects on Neurocognitive and Metabolic Phenotypes in Mouse Models of 16p11.2 Deletion and Duplication Syndromes [J].
Arbogast, Thomas ;
Ouagazzal, Abdel-Mouttalib ;
Chevalier, Claire ;
Kopanitsa, Maksym ;
Afinowi, Nurudeen ;
Migliavacca, Eugenia ;
Cowling, Belinda S. ;
Birling, Marie-Christine ;
Champy, Marie-France ;
Reymond, Alexandre ;
Herault, Yann .
PLOS GENETICS, 2016, 12 (02)
[4]   SHANK3 haploinsufficiency: a "common" but underdiagnosed highly penetrant monogenic cause of autism spectrum disorders [J].
Betancur, Catalina ;
Buxbaum, Joseph D. .
MOLECULAR AUTISM, 2013, 4
[5]   Transcriptional Consequences of 16p11.2 Deletion and Duplication in Mouse Cortex and Multiplex Autism Families [J].
Blumenthal, Ian ;
Ragavendran, Ashok ;
Erdin, Serkan ;
Klei, Lambertus ;
Sugathan, Aarathi ;
Guide, Jolene R. ;
Manavalan, Poornima ;
Zhou, Julian Q. ;
Wheeler, Vanessa C. ;
Levin, Joshua Z. ;
Ernst, Carl ;
Roeder, Kathryn ;
Devlin, Bernie ;
Gusella, James F. ;
Talkowski, Michael E. .
AMERICAN JOURNAL OF HUMAN GENETICS, 2014, 94 (06) :870-883
[6]   Targeting histone K4 trimethylation for treatment of cognitive and synaptic deficits in mouse models of Alzheimer's disease [J].
Cao, Qing ;
Wang, Wei ;
Williams, Jamal B. ;
Yang, Fengwei ;
Wang, Zi-Jun ;
Yang, Zhen .
SCIENCE ADVANCES, 2020, 6 (50)
[7]   Histone Acetylation in Neurodevelopment [J].
Contestabile, Antonio ;
Sintoni, Silvia .
CURRENT PHARMACEUTICAL DESIGN, 2013, 19 (28) :5043-5050
[8]   Synaptic, transcriptional and chromatin genes disrupted in autism [J].
De Rubeis, Silvia ;
He, Xin ;
Goldberg, Arthur P. ;
Poultney, Christopher S. ;
Samocha, Kaitlin ;
Cicek, A. Ercument ;
Kou, Yan ;
Liu, Li ;
Fromer, Menachem ;
Walker, Susan ;
Singh, Tarjinder ;
Klei, Lambertus ;
Kosmicki, Jack ;
Fu, Shih-Chen ;
Aleksic, Branko ;
Biscaldi, Monica ;
Bolton, Patrick F. ;
Brownfeld, Jessica M. ;
Cai, Jinlu ;
Campbell, Nicholas G. ;
Carracedo, Angel ;
Chahrour, Maria H. ;
Chiocchetti, Andreas G. ;
Coon, Hilary ;
Crawford, Emily L. ;
Crooks, Lucy ;
Curran, Sarah R. ;
Dawson, Geraldine ;
Duketis, Eftichia ;
Fernandez, Bridget A. ;
Gallagher, Louise ;
Geller, Evan ;
Guter, Stephen J. ;
Hill, R. Sean ;
Ionita-Laza, Iuliana ;
Gonzalez, Patricia Jimenez ;
Kilpinen, Helena ;
Klauck, Sabine M. ;
Kolevzon, Alexander ;
Lee, Irene ;
Lei, Jing ;
Lehtimaeki, Terho ;
Lin, Chiao-Feng ;
Ma'ayan, Avi ;
Marshall, Christian R. ;
McInnes, Alison L. ;
Neale, Benjamin ;
Owen, Michael J. ;
Ozaki, Norio ;
Parellada, Mara .
NATURE, 2014, 515 (7526) :209-+
[9]   Autism-like Deficits in Shank3-Deficient Mice Are Rescued by Targeting Actin Regulators [J].
Duffney, Lara J. ;
Zhong, Ping ;
Wei, Jing ;
Matas, Emmanuel ;
Cheng, Jia ;
Qin, Luye ;
Ma, Kaijie ;
Dietz, David M. ;
Kajiwara, Yuji ;
Buxbaum, Joseph D. ;
Yan, Zhen .
CELL REPORTS, 2015, 11 (09) :1400-1413
[10]   Shank3 Deficiency Induces NMDA Receptor Hypofunction via an Actin-Dependent Mechanism [J].
Duffney, Lara J. ;
Wei, Jing ;
Cheng, Jia ;
Liu, Wenhua ;
Smith, Katharine R. ;
Kittler, Josef T. ;
Yan, Zhen .
JOURNAL OF NEUROSCIENCE, 2013, 33 (40) :15767-15778