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首页> 外文期刊>Human Molecular Genetics >RNA transcripts, miRNA-sized fragments and proteins produced from D4Z4 units: new candidates for the pathophysiology of facioscapulohumeral dystrophy.
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RNA transcripts, miRNA-sized fragments and proteins produced from D4Z4 units: new candidates for the pathophysiology of facioscapulohumeral dystrophy.

机译:D4Z4单位产生的RNA转录本,miRNA大小的片段和蛋白质:面肩肱型营养不良的病理生理学新候选者。

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Deletion of a subset of the D4Z4 macrosatellite repeats in the subtelomeric region of chromosome 4q causes facioscapulohumeral muscular dystrophy (FSHD) when occurring on a specific haplotype of 4qter (4qA161). Several genes have been examined as candidates for causing FSHD, including the DUX4 homeobox gene in the D4Z4 repeat, but none have been definitively shown to cause the disease, nor has the full extent of transcripts from the D4Z4 region been carefully characterized. Using strand-specific RT-PCR, we have identified several sense and antisense transcripts originating from the 4q D4Z4 units in wild-type and FSHD muscle cells. Consistent with prior reports, we find that the DUX4 transcript from the last (most telomeric) D4Z4 unit is polyadenylated and has two introns in its 3-prime untranslated region. In addition, we show that this transcript generates (i) small si/miRNA-sized fragments, (ii) uncapped, polyadenylated 3-prime fragments that encode the conserved C-terminal portion of DUX4 and (iii) capped and polyadenylated mRNAs that contain the double-homeobox domain of DUX4 but splice-out the C-terminal portion. Transfection studies demonstrate that translation initiation at an internal methionine can produce the C-terminal polypeptide and developmental studies show that this peptide inhibits myogenesis at a step between MyoD transcription and the activation of MyoD target genes. Together, we have identified new sense and anti-sense RNA transcripts, novel mRNAs and mi/siRNA-sized RNA fragments generated from the D4Z4 units that are new candidates for the pathophysiology of FSHD.
机译:当发生在4qter的特定单倍型(4qA161)上时,删除4q染色体亚端粒区域中的D4Z4大卫星重复序列的子集会导致面肩肱肱肌营养不良(FSHD)。已经检查了几种基因作为导致FSHD的候选基因,包括D4Z4重复序列中的DUX4同源框基因,但没有明确显示出导致该疾病的原因,也没有仔细表征D4Z4区域的全部转录本。使用链特异性RT-PCR,我们已经鉴定了一些源自野生型和FSHD肌肉细胞中4q D4Z4单元的有义和反义转录本。与先前的报告一致,我们发现来自最后一个(最端粒的)D4Z4单元的DUX4转录物是聚腺苷酸化的,并且在其3个主要的非翻译区域具有两个内含子。此外,我们显示此转录本产生(i)小si / miRNA大小的片段,(ii)编码DUX4保守C端部分的未封端,聚腺苷酸3-引物片段,以及(iii)包含DUX4的双同源盒域,但剪接C端部分。转染研究表明,内部蛋氨酸的翻译起始可以产生C端多肽,而发育研究表明,该肽在MyoD转录和MyoD目标基因激活之间的一步抑制肌发生。在一起,我们已经确定了从D4Z4单元产生的新的有义和反义RNA转录本,新颖的mRNA和mi / siRNA大小的RNA片段,它们是FSHD病理生理学的新候选者。

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