首页> 外文期刊>Human Molecular Genetics >Specific interaction of Smn, the spinal muscular atrophy determining gene product, with hnRNP-R and gry-rbp/hnRNP-Q: a role for Smn in RNA processing in motor axons?
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Specific interaction of Smn, the spinal muscular atrophy determining gene product, with hnRNP-R and gry-rbp/hnRNP-Q: a role for Smn in RNA processing in motor axons?

机译:脊髓肌肉萎缩决定基因产物Smn与hnRNP-R和gry-rbp / hnRNP-Q的特异性相互作用:Smn在运动轴突RNA处理中的作用?

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摘要

Spinal muscular atrophy (SMA), the most common hereditary motor neuron disease in children and young adults is caused by mutations in the telomeric survival motor neuron (SMN1) gene. The human genome, in contrast to mouse, contains a second SMN gene (SMN2) which codes for a gene product which is alternatively spliced at the C-terminus, but also gives rise to low levels of full-length SMN protein. The reason why reduced levels of the ubiquitously expressed SMN protein lead to specific motor neuron degeneration without affecting other cell types is still not understood. Using yeast two-hybrid techniques, we identified hnRNP-R and the highly related gry-rbp/hnRNP-Q as novel SMN interaction partners. These proteins have previously been identified in the context of RNA processing, in particular mRNA editing, transport and splicing. hnRNP-R and gry-rbp/hnRNP-Q interact with wild-type Smn but not with truncated or mutant Smn forms identified in SMA. Both proteins are widely expressed and developmentally regulated with expression peaking at E19 in mouse spinal cord. hnRNP-R binds RNA through its RNA recognition motif domains. Interestingly, hnRNP-R is predominantly located in axons of motor neurons and co-localizes with Smn in this cellular compartment. Thus, this finding could provide a key to understand a motor neuron-specific Smn function in SMA.
机译:脊髓性肌萎缩症(SMA),是儿童和年轻人中最常见的遗传性运动神经元疾病,是由端粒生存运动神经元(SMN1)基因突变引起的。与小鼠相反,人类基因组包含第二个SMN基因(SMN2),该基因编码可在C末端剪接的基因产物,但也会导致全长SMN蛋白水平降低。普遍表达的SMN蛋白水平降低会导致特定的运动神经元变性而又不影响其他细胞类型的原因仍然未知。使用酵母双杂交技术,我们确定hnRNP-R和高度相关的gry-rbp / hnRNP-Q为新型SMN相互作用的伙伴。这些蛋白质先前已在RNA加工,特别是mRNA编辑,转运和剪接的背景下被鉴定。 hnRNP-R和gry-rbp / hnRNP-Q与野生型Smn相互作用,但不与SMA中鉴定的截短或突变Smn形式相互作用。两种蛋白质均在小鼠脊髓中广泛表达并受E19的表达峰值调控。 hnRNP-R通过其RNA识别基序域与RNA结合。有趣的是,hnRNP-R主要位于运动神经元的轴突中,并与Smn共定位在该细胞区室中。因此,该发现可以为理解SMA中运动神经元特异性Smn功能提供关键。

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