首页> 外文期刊>Human Molecular Genetics >Effects of dyskeratosis congenita mutations in dyskerin, NHP2 and NOP10 on assembly of H/ACA pre-RNPs.
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Effects of dyskeratosis congenita mutations in dyskerin, NHP2 and NOP10 on assembly of H/ACA pre-RNPs.

机译:dyskerin,NHP2和NOP10中的角化异常先天突变对H / ACA pre-RNP装配的影响。

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摘要

Dyskeratosis congenita (DC) is a rare genetic syndrome that gives rise to a variety of disorders in affected individuals. Remarkably, all causative gene mutations identified to date share a link to telomere/telomerase biology. We found that the most prevalent dyskerin mutation in DC (A353V) did not affect formation of the NAF1-dyskerin-NOP10-NHP2 tetramer that normally assembles with nascent H/ACA RNAs in vivo. However, the A353V mutation slightly reduced pre-RNP assembly with the H/ACA-like domain of human telomerase RNA (hTR). In contrast, NHP2 mutations V126M and Y139H impaired association with NOP10, leading to major pre-RNP assembly defects with all H/ACA RNAs tested, including the H/ACA domain of hTR. Mutation R34W in NOP10 caused no apparent defect in protein tetramer formation, but it severely affected pre-RNP assembly with the H/ACA domain of hTR and a subset of H/ACA RNAs. Surprisingly, H/ACA sno/scaRNAs that encode miRNAs were not affected by the mutation R34W, and they were able to form pre-RNPs with NOP10-R34W. This indicates structural differences between H/ACA RNPs that encode miRNAs and those that do not. Altogether, our results suggest that, in addition to major defects in the telomere/telomerase pathways, some of the disorders occurring in DC may be caused by alteration of most H/ACA RNPs, or by only a subset of them.
机译:先天性角化病(DC)是一种罕见的遗传综合症,在患病个体中引起多种疾病。值得注意的是,迄今为止确定的所有致病基因突变都与端粒/端粒酶生物学有联系。我们发现DC中最普遍的dyskerin突变(A353V)不会影响通常与新生的H / ACA RNA体内组装的NAF1-dyskerin-NOP10-NHP2四聚体的形成。但是,A353V突变稍微减少了人类端粒酶RNA(hTR)的H / ACA样结构域的RNP前装配。相比之下,NHP2突变V126M和Y139H削弱了与NOP10的结合,导致所有H / ACA RNA(包括hTR的H / ACA域)受RNP组装前的重大缺陷。 NOP10中的R34W突变不会引起蛋白质四聚体形成的明显缺陷,但它会通过hTR的H / ACA域和H / ACA RNA的一个子集严重影响RNP前的装配。令人惊讶的是,编码miRNA的H / ACA sno / scaRNA不受突变R34W的影响,并且它们能够与NOP10-R34W形成pre-RNP。这表明编码miRNA的H / ACA RNP与未编码miRNA的H / ACA RNP之间的结构差异。总之,我们的结果表明,除了端粒/端粒酶途径的主要缺陷外,DC中发生的某些疾病可能是由大多数H / ACA RNP的改变或仅由它们的一部分引起的。

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