首页> 外文期刊>American journal of medical genetics, Part A >Cartilage hair hypoplasia mutations that lead to RMRP promoter inefficiency or RNA transcript instability.
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Cartilage hair hypoplasia mutations that lead to RMRP promoter inefficiency or RNA transcript instability.

机译:软骨毛发育不全突变导致RMRP启动子无效或RNA转录本不稳定。

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摘要

Cartilage hair hypoplasia (CHH; MIM 250250) is an autosomal recessive disease with diverse clinical manifestations. It is caused by mutations in RMRP gene, the RNA component of the ribonucleoprotein complex RNase MRP. Mutations in RMRP have been found in patients in the core promoter region or in the transcribed region, but the pathogenetic effect of the mutations is unclear. Real-time PCR assays confirmed that both promoter (c.-16_-1 dup and c.-15_+2 dup) and transcribed mutations (c.168G > A and c.218A > G) lower the expression level of RMRP. Experiments with 5'RACE, showed that the reduced transcription in the promoter mutants was accompanied by shifting of the transcription initiation sites to nucleotides 5'-upstream of the authentic site. Low levels of RMRP expression levels with transcript mutations were also seen when constructs encoding the wild-type and mutant genes were transfected into cultured cells. The reduced transcription was correlated with greater instability of mutant RMRP transcripts compared to controls. A comparable reduction was seen when a mouse gene containing the c.70A > G mutation (the major mutation in humans with CHH) was introduced into ES cells in place of one of the wild-type alleles. The low expression level of the c.70A > G Rmrp RNA was confirmed by expression assays into cultured cells, and was again correlated with RNA instability. Our results indicate that a loss of mutant RNA transcripts is a critical feature of pathogenesis.
机译:软骨毛发发育不全(CHH; MIM 250250)是一种常染色体隐性疾病,具有多种临床表现。它是由RMRP基因的突变引起的,RMRP基因是核糖核蛋白复合物RNase MRP的RNA成分。在核心启动子区域或转录区域的患者中发现了RMRP突变,但该突变的致病作用尚不清楚。实时PCR分析证实启动子(c.-16_-1 dup和c.-15_ + 2 dup)和转录突变(c.168G> A和c.218A> G)均降低了RMRP的表达水平。用5'RACE进行的实验表明,启动子突变体中转录的降低伴随着转录起始位点向真实位点5'-上游核苷酸的转移。当将编码野生型和突变基因的构建体转染到培养的细胞中时,还发现转录物突变的RMRP表达水平较低。与对照相比,减少的转录与突变的RMRP转录物更大的不稳定性相关。当将包含c.70A> G突变(CHH人类中的主要突变)的小鼠基因代替野生型等位基因之一引入ES细胞时,观察到了类似的降低。 c.70A> G Rmrp RNA的低表达水平已通过表达分析确认到培养细胞中,并再次与RNA不稳定性相关。我们的结果表明,突变RNA转录本的丢失是发病机理的关键特征。

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