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首页> 外文期刊>Human mutation >A mutation in the SEPN1 selenocysteine redefinition element (SRE) reduces selenocysteine incorporation and leads to SEPN1-related myopathy.
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A mutation in the SEPN1 selenocysteine redefinition element (SRE) reduces selenocysteine incorporation and leads to SEPN1-related myopathy.

机译:SEPN1硒代半胱氨酸重新定义元件(SRE)中的突变减少了硒代半胱氨酸的掺入并导致SEPN1相关的肌病。

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摘要

Mutations in SEPN1 result in a spectrum of early-onset muscle disorders referred to as SEPN1-related myopathy. The SEPN1 gene encodes selenoprotein N (SelN), which contains the amino acid selenocysteine (Sec). Incorporation of Sec occurs due to redefinition of a UGA codon during translation. Efficient insertion requires a Sec insertion sequence (SECIS) in the 3'UTR and, for at least a subset of selenoprotein genes, a Sec redefinition element (SRE) located adjacent to the UGA codon. We report the effect of three novel and one previously reported point mutation in the SelN SRE element on Sec insertion efficiency. Notably, the previously reported mutation c.1397G>A (p.R466Q), which weakens the secondary structure of the SRE element, reduces Sec insertion efficiency and SelN RNA levels. Muscle from patients with this mutation have negligible levels of SelN protein. This data highlights the importance of the SRE element during SelN expression and illustrates a novel molecular mechanism by which point mutations may lead to SEPN1-related myopathy.
机译:SEPN1中的突变会导致一系列早期发作的肌肉疾病,称为SEPN1相关性肌病。 SEPN1基因编码硒蛋白N(SelN),其中含有氨基酸硒代半胱氨酸(Sec)。由于在翻译过程中重新定义了UGA密码子,因此出现了Sec。有效的插入需要在3'UTR中插入一个Sec插入序列(SECIS),并且对于至少一个硒蛋白基因的子集,需要在靠近UGA密码子的位置插入一个Sec重新定义元件(SRE)。我们报告了SelN SRE元素中的三种新型和一种先前报道的点突变对Sec插入效率的影响。值得注意的是,先前报道的突变c.1397G> A(p.R466Q)削弱了SRE元件的二级结构,降低了Sec插入效率和SelN RNA水平。具有这种突变的患者的肌肉中SelN蛋白的水平可以忽略不计。该数据突出了SREN表达过程中SRE元件的重要性,并阐明了一种新的分子机制,据此点突变可能导致SEPN1相关性肌病。

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