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首页> 外文期刊>Human Molecular Genetics >Targeting of SMN to Cajal bodies is mediated by self-association.
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Targeting of SMN to Cajal bodies is mediated by self-association.

机译:SMN靶向Cajal体是通过自我联想来介导的。

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摘要

The childhood autosomal recessive disorder spinal muscular atrophy (SMA) is caused by mutations in the survival motor neuron (SMN) gene. SMN localizes diffusely in the cytoplasm and in distinct nuclear structures called Cajal bodies. Cajal bodies are believed to be the storage and processing sites of several ribonucleoproteins. Here, using a novel panel of SMN exon deletion constructs, we report a systematic analysis of internal targeting domains in the SMN protein. We demonstrate that the peptides encoded by exons 2b, 3 and 6 perform an integral role in the cellular targeting of SMN. In addition, we identify a nine amino acid motif within the highly conserved sequences of the exon 2b encoded domain that mediates Cajal body targeting and self-association. Deletion of this domain dramatically affects SMN activity and results in a dominant-negative clone. These results identify critical domains within the SMN protein and have an impact on our understanding of the SMN protein with regards to SMA as well as cellular biology.
机译:儿童常染色体隐性遗传性疾病脊髓性肌萎缩症(SMA)是由存活运动神经元(SMN)基因突变引起的。 SMN散布在细胞质和称为Cajal体的独特核结构中。人们认为,卡哈尔体是几种核糖核蛋白的储存和加工位点。在这里,使用SMN外显子缺失构建体的新型面板,我们报告了SMN蛋白中内部靶向域的系统分析。我们证明,由外显子2b,3和6编码的肽在SMN的细胞靶向中发挥不可或缺的作用。另外,我们在外显子2b编码域的高度保守序列中鉴定了九个氨基酸基序,该序列介导Cajal机体靶向和自我缔合。该结构域的删除极大地影响了SMN的活性,并导致显性负克隆。这些结果确定了SMN蛋白中的关键结构域,并影响了我们对SMA和细胞生物学方面SMN蛋白的理解。

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