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An Electrochemiluminescence-Based Assay for MeCP2 Protein Variants
Published on: May 22, 2020
Mild overexpression of MeCP2 causes a progressive neurological disorder in mice
Ann L Collins1, Jonathan M Levenson, Alexander P Vilaythong
1Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
Abstract:
Mutations in the X-linked methyl-CpG-binding protein 2 (MECP2), encoding a transcriptional repressor, cause Rett syndrome and a variety of related neurodevelopmental disorders. The vast majority of mutations associated with human disease are loss-of-function mutations, but precisely what aspect of MeCP2 function is responsible for these phenotypes remains unknown. We overexpressed wild-type human protein in transgenic mice using a large genomic clone containing the entire human MECP2 locus. Detailed neurobehavioral and electrophysiological studies in transgenic line MeCP2(Tg1), which expresses MeCP2 at approximately 2-fold wild-type levels, demonstrated onset of phenotypes around 10 weeks of age. Surprisingly, these mice displayed enhanced motor and contextual learning and enhanced synaptic plasticity in the hippocampus. After 20 weeks of age, however, these mice developed seizures, became hypoactive and approximately 30% of them died by 1 year of age. These data demonstrate that MeCP2 levels must be tightly regulated in vivo, and that even mild overexpression of this protein is detrimental. Furthermore, these results support the possibility that duplications or gain-of-function mutations in MECP2 might underlie some cases of X-linked delayed-onset neurobehavioral disorders.
Insights
Methyl-CpG-binding protein 2 (MECP2) levels require tight regulation. Mild overexpression of MECP2 in mice caused initial learning enhancements but later led to seizures, hypoactivity, and mortality, indicating detrimental effects.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Mutations in methyl-CpG-binding protein 2 (MECP2) cause Rett syndrome and related neurodevelopmental disorders.
- Most disease-associated mutations are loss-of-function, but the precise functional impact remains unclear.
Purpose of the Study:
- To investigate the in vivo consequences of MECP2 levels.
- To determine if MECP2 overexpression causes detrimental effects.
Main Methods:
- Overexpression of wild-type human MECP2 in transgenic mice.
- Neurobehavioral and electrophysiological assessments.
- Longitudinal monitoring of phenotypes and survival.
Main Results:
- Mice overexpressing MECP2 (approx. 2-fold) showed enhanced motor and contextual learning and hippocampal synaptic plasticity around 10 weeks.
- After 20 weeks, these mice developed seizures, hypoactivity, and mortality (30% by 1 year).
Conclusions:
- MECP2 levels must be tightly regulated in vivo.
- Mild MECP2 overexpression is detrimental, suggesting gain-of-function mutations could cause X-linked neurobehavioral disorders.

