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An exonic enhancer is required for inclusion of an essential exon in the SMA-determining gene SMN.

机译:在SMA决定基因SMN中包含必需外显子需要外显子增强剂。

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摘要

The survival motor neuron genes, SMN1 and SMN2, encode identical proteins; however, only homo- zygous loss of SMN1 correlates with the development of spinal muscular atrophy (SMA). We have previously shown that a single non-polymorphic nucleotide difference in SMN exon 7 dramatically affects SMN mRNA processing. SMN1 primarily produces a full-length RNA whereas SMN2 expresses dramatically reduced full-length RNA and abundant levels of an aberrantly spliced transcript lacking exon 7. The importance of proper exon 7 processing has been underscored by the identification of several mutations within splice sites adjacent to exon 7. Here we show that an AG-rich exonic splice enhancer (ESE) in the center of SMN exon 7 is required for inclusion of exon 7. This region functioned as an ESE in a heterologous context, supporting efficient in vitro splicing of the Drosophila double-sex gene. Finally, the protein encoded by the exon-skipping event, Delta7, was less stable than full-length SMN, providing additional evidence of why SMN2 fails to compensate for the loss of SMN1 and leads to the development of SMA.
机译:存活的运动神经元基因SMN1和SMN2编码相同的蛋白质。然而,只有SMN1的纯合子丢失与脊髓性肌萎缩症(SMA)的发展有关。我们以前已经表明,SMN外显子7中的单个非多态核苷酸差异会极大地影响SMN mRNA的加工。 SMN1主要产生全长RNA,而SMN2表达大幅减少的全长RNA和丰富水平的缺乏外显子7的异常剪接转录本。通过鉴定与之相邻的剪接位点内的几个突变,强调了正确进行外显子7加工的重要性。外显子7。这里我们显示,要包含外显子7,需要在SMN外显子7的中心处有一个富含AG的外显子剪接增强子(ESE)。该区域在异源环境中起ESE的作用,支持该分子的有效体外剪接。果蝇双性基因。最后,外显子跳跃事件Delta7编码的蛋白质比全长SMN不稳定,这提供了SMN2为何无法补偿SMN1损失并导致SMA发生的证据。

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