Aberrant brain functional and structural developments in MECP2 duplication rats

Transgenic animal models with homologous etiology provide a promising way to pursue the neurobiological substrates of the behavioral deficits in autism spectrum disorder (ASD). Gain-of-function mutations of MECP2 cause MECP2 duplication syndrome, a severe neurological disorder with core symptoms of...

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Veröffentlicht in:Neurobiology of disease 2022-10, Vol.173, p.105838-105838, Article 105838
Hauptverfasser: Xu, Ming, Qi, Shile, Calhoun, Vince, Dai, Jiankun, Yu, Bin, Zhang, Kaiwei, Pei, Mengchao, Li, Chenjian, Wei, Yusheng, Jiang, Rongtao, Zhi, Dongmei, Huang, Zhimin, Qiu, Zilong, Liang, Zhifeng, Sui, Jing
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Sprache:eng
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Zusammenfassung:Transgenic animal models with homologous etiology provide a promising way to pursue the neurobiological substrates of the behavioral deficits in autism spectrum disorder (ASD). Gain-of-function mutations of MECP2 cause MECP2 duplication syndrome, a severe neurological disorder with core symptoms of ASD. However, abnormal brain developments underlying the autistic-like behavioral deficits of MECP2 duplication syndrome are rarely investigated. To this end, a human MECP2 duplication (MECP2-DP) rat model was created by the bacterial artificial chromosome transgenic method. Functional and structural magnetic resonance imaging (MRI) with high-field were performed on 16 male MECP2-DP rats and 15 male wildtype rats at postnatal 28 days, 42 days, and 56 days old. Multimodal fusion analyses guided by locomotor-relevant metrics and social novelty time separately were applied to identify abnormal brain networks associated with diverse behavioral deficits induced by MECP2 duplication. Aberrant functional developments of a core network primarily composed of the dorsal medial prefrontal cortex (dmPFC) and retrosplenial cortex (RSP) were detected to associate with diverse behavioral phenotypes in MECP2-DP rats. Altered developments of gray matter volume were detected in the hippocampus and thalamus. We conclude that gain-of-function mutations of MECP2 induce aberrant functional activities in the default-mode-like network and aberrant volumetric changes in the brain, resulting in autistic-like behavioral deficits. Our results gain critical insights into the biomarker of MECP2 duplication syndrome and the neurobiological underpinnings of the behavioral deficits in ASD. •A new MECP2 duplication rat model with autistic-like behaviors was established.•Multimodal fusion technology was first applied to analyze the longitudinal rat brain images.•Maldevelopment of the default-mode-like network was detected in the transgenic rats.•The transgenic rats exhibited hippocampal overgrowth and thalamic maldevelopment.•Aberrant function of a core network underlies diverse behavioral deficits of the transgenic rats.
ISSN:0969-9961
1095-953X
DOI:10.1016/j.nbd.2022.105838