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Rett syndrome: review of biological abnormalities
1Division of Neurology, British Columbia's Children's Hospital, Vancouver, BC, Canada.
Insights
Rett syndrome (RS) is a rare neurodevelopmental disorder primarily affecting females, characterized by developmental regression and distinct motor and cognitive impairments. Mutations in the MECP2 gene are a key genetic cause, impacting brain function.
Area of Science:
- Neuroscience
- Genetics
- Pediatric Neurology
Background:
- Rett syndrome (RS) is a rare, sporadic neurodevelopmental disorder predominantly affecting females.
- It involves developmental slowing, loss of acquired skills, and distinctive motor and behavioral features.
- Historically considered X-linked, new genetic insights have emerged.
Purpose of the Study:
- To review the clinical manifestations, genetic basis, and neuropathological findings in Rett syndrome.
- To explore neurometabolic and neuroimaging data related to RS.
- To discuss ongoing research into MECP2 gene mutations and their effects.
Main Methods:
- Review of clinical studies, genetic linkage analyses, and mutation identification in the MECP2 gene.
- Neuropathological and electrophysiological assessments.
- Analysis of neurometabolic factors (neurotransmitters, growth factors) and neuroimaging (MRI, PET).
Main Results:
- Mutations in the MECP2 gene, encoding methyl cytosine-binding protein 2, are identified in a significant proportion of RS cases.
- Studies reveal alterations in neurotransmitter levels (dopamine, serotonin) and nerve growth factors.
- Neuroimaging studies provide insights into brain structure and function in RS patients.
Conclusions:
- MECP2 gene mutations are central to the pathophysiology of Rett syndrome.
- Further research is crucial for understanding the molecular mechanisms and developing targeted therapies.
- Comprehensive analysis of clinical, genetic, and imaging data aids in characterizing RS progression and heterogeneity.
Abstract:
The Rett syndrome (RS) is a peculiar, sporadic, atrophic disorder, almost entirely confined to females. After the first six months of life there is developmental slowing with reduced communication and head growth for about one year. This is followed by a rapid destructive stage with severe dementia and loss of hand skills (with frequent hand wringing), apraxia and ataxia, autistic features and irregular breathing with hyperventilation. Seizures often supervene. Subsequently there is some stabilization in a pseudo-stationary stage during the preschool to school years, associated with more emotional contact but also abnormalities of the autonomic and skeletal systems. After the age of 15-20 years, a late motor deterioration occurs with dystonia and frequent spasticity but seizures become milder. RS has generally been considered an X-linked disorder in which affected females represent a new mutation, with male lethality. Linkage studies suggested a critical region at Xq28. In 1999, mutations in the gene MECP2 encoding X-linked methyl cytosine-binding protein 2 (MeCP2) were found in a proportion of Rett girls. This protein can bind methylated DNA. Analyses are leading to much further investigation of mutants and their effects on genes. Neuropathological and electrophysiological studies of RS are described. Description of neurometabolic factors includes reduced levels of dopamine, serotonin, noradrenaline and choline acetyltransferase (ChAT) in brain, also estimation of nerve growth factors, endorphin, substance P, glutamate and other amino acids and their receptor levels. The results of neuroimaging are surveyed, including volumetric magnetic resonance imaging (MRI) and positron emission tomography (PET).
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