首页> 外文期刊>Human Molecular Genetics >Myotonic dystrophy: tissue-specific effect of somatic CTG expansions on allele-specific DMAHP/SIX5 expression.
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Myotonic dystrophy: tissue-specific effect of somatic CTG expansions on allele-specific DMAHP/SIX5 expression.

机译:强直性肌营养不良:体细胞CTG扩展对等位基因特异性DMAHP / SIX5表达的组织特异性作用。

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摘要

Myotonic dystrophy (DM), the most common inherited muscle disorder, is caused by a CTG expansion in the 3"-untranslated region of a protein kinase gene ( DMPK ). The complex and variable phenotype is most likely caused by a complex molecular pathogenesis, including deficiency of the DMPK protein, a trans -dominant misregulation of RNA homeostasis and haploinsufficiency of a neighboring homeobox gene [DM locus-associated homeodomain protein (DMAHP )]. Here, we study the allele-specific transcriptional activity of the DMAHP/SIX5 gene in DM patient tissues. Using a quantitative fluorescent RT-PCR assay, we tested allele-specific accumulation of DMAHP/SIX5 transcripts in both total and poly(A)+pools. In muscle biopsies, we found that transcript reductions of DMAHP/SIX5 alleles in cis with CTG expansions correlated with the extent of expansion. A patient with approximately 90 CTG repeats in muscle DNA (normal n < 37) showed a 20% reduction of allele-specific transcript levels, while four other DM patients with larger expansions showed 80% reductions. The effects of the CTG expansions on DMAHP transcription were tissue specific: autopsy tissues from a patient with 1500 repeats showed 80% reductions in muscle and liver; however, RNA from other tissues (lung, aorta, heart conduction tissue, cerebellum) showed 0-20% reductions. Our results suggest that the effect of the CTG repeat on the DMAHP/SIX5 promoter is variable and tissue-specific. Our data are consistent with abnormalities of DMAHP/SIX5 probably having a more prominent role in disease pathogenesis in muscle, liver and brain, but being less important in other tissues.
机译:肌强直性营养不良(DM)是最常见的遗传性肌肉疾病,是由蛋白激酶基因(DMPK)3“非翻译区的CTG扩展引起的。复杂而可变的表型很可能是由复杂的分子发病机制引起的,包括DMPK蛋白的缺乏,RNA稳态的反式失调和邻近同源盒基因[DM位点相关的同源域蛋白(DMAHP)]的单倍不足。在这里,我们研究DMAHP / SIX5基因的等位基因特异性转录活性在DM患者组织中,我们使用定量荧光RT-PCR方法检测了总和poly(A)+细胞中DMAHP / SIX5转录本的等位基因特异性积累,在肌肉活检中,我们发现DMAHP / SIX5等位基因的转录本减少了。 CTG扩展与扩展程度相关的患者中,肌肉DNA大约有90个CTG重复的患者(正常n <37)显示等位基因特异性转录水平降低了20%,而4 ot她的扩张较大的DM患者显示减少80%。 CTG扩展对DMAHP转录的影响是组织特异性的:具有1500次重复的患者的尸检组织显示其肌肉和肝脏减少了80%。但是,其他组织(肺,主动脉,心脏传导组织,小脑)的RNA却降低了0-20%。我们的结果表明,CTG重复对D​​MAHP / SIX5启动子的影响是可变的,并且是组织特异性的。我们的数据与DMAHP / SIX5的异常相一致,可能在肌肉,肝脏和脑部的疾病发病机理中起着更为重要的作用,而在其他组织中则不那么重要。

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