Rescue of Methyl-CpG Binding Protein 2 Dysfunction-induced Defects in Newborn Neurons by Pentobarbital

Authors
Ma, DongliangYoon, Su-InYang, Chih-HaoMarcy, GuillaumeZhao, NaLeong, Wan-YingGanapathy, VinuHan, JuVan Dongen, Antonius M. J.Hsu, Kuei-SenMing, Guo-LiAugustine, George J.Goh, Eyleen L. K.
Issue Date
2015-04
Publisher
SPRINGER
Citation
NEUROTHERAPEUTICS, v.12, no.2, pp.477 - 490
Abstract
Rett syndrome is a neurodevelopmental disorder that usually arises from mutations or deletions in methyl-CpG binding protein 2 (MeCP2), a transcriptional regulator that affects neuronal development and maturation without causing cell loss. Here, we show that silencing of MeCP2 decreased neurite arborization and synaptogenesis in cultured hippocampal neurons from rat fetal brains. These structural defects were associated with alterations in synaptic transmission and neural network activity. Similar retardation of dendritic growth was also observed in MeCP2-deficient newborn granule cells in the dentate gyrus of adult mouse brains in vivo, demonstrating direct and cell-autonomous effects on individual neurons. These defects, caused by MeCP2 deficiency, were reversed by treatment with the US Food and Drug Administration-approved drug, pentobarbital, in vitro and in vivo, possibly caused by modulation of gamma-aminobutyric acid signaling. The results indicate that drugs modulating gamma-aminobutyric acid signaling are potential therapeutics for Rett syndrome.
Keywords
MECP2 MUTANT MICE; RETT-SYNDROME; MOUSE MODEL; TRANSCRIPTIONAL REPRESSOR; SYNAPTIC PLASTICITY; HIPPOCAMPAL-NEURONS; NONSENSE MUTATIONS; CA2+ OSCILLATIONS; BRAIN; GABA(A); Rett syndrome; newborn neurons; dendrites; GABA; pentobarbital
ISSN
1933-7213
URI
https://pubs.kist.re.kr/handle/201004/125568
DOI
10.1007/s13311-015-0343-0
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KIST Article > 2015
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