The role of SMN in spinal muscular atrophy

被引:0
|
作者
S. Jablonka
W. Rossoll
B. Schrank
M. Sendtner
机构
[1] Klinische Forschergruppe Neuroregeneration,
[2] Dept. of Neurology,undefined
[3] University of Wuerzburg,undefined
[4] Josef-Schneider-Str. 11,undefined
[5] 97080 Wuerzburg,undefined
[6] Germany Tel.: +49-931-201-5767 Fax: +49-931-201-2697 e-mail: sendtner@mail.uni-wuerzburg.de,undefined
来源
Journal of Neurology | 2000年 / 247卷
关键词
Key words Motoneuron; Motoneuron disease; RNA ¶metabolism; Apoptosis; Knockout mouse; Animal model;
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学科分类号
摘要
Childhood spinal muscular atrophy (SMA) is a common autosomal recessive disorder which is characterized by muscle weakness due to degeneration of motoneurons in the spinal cord and brainstem nuclei. Positional cloning strategies have revealed several gene candidates including the genes for the survival motoneuron (SMN) and the neuronal apoptosis inhibitory protein (NAIP). Both genes are duplicated on chromosome 5. Homozygous deletions/mutations of the telomeric SMN gene, which is expressed from both copies on human chromosome 5, are associated with the disease. Recent reports suggest involvement of the SMN protein in the formation of spliceosomal particles in the cytoplasm and in the regeneration of spliceosomes in the nucleus. These data put spinal muscular atrophy into a growing group of disorders of RNA metabolism which also include fragile-X syndrome and myotonic dystrophy. Relevance of these previous data for the pathogenesis of the disease are discussed in this review.
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页码:I37 / I42
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