首页> 外文期刊>The American Journal of Human Genetics >A nonsense mutation in DHTKD1 causes charcot-marie-tooth disease type 2 in a large chinese pedigree
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A nonsense mutation in DHTKD1 causes charcot-marie-tooth disease type 2 in a large chinese pedigree

机译:DHTKD1的无意义突变在一个大型的中国谱系中导致2型夏洛特玛丽牙齿疾病

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Charcot-Marie-Tooth (CMT) disease represents a clinically and genetically heterogeneous group of inherited neuropathies. Here, we report a five-generation family of eight affected individuals with CMT disease type 2, CMT2. Genome-wide linkage analysis showed that the disease phenotype is closely linked to chromosomal region 10p13-14, which spans 5.41 Mb between D10S585 and D10S1477. DNA-sequencing analysis revealed a nonsense mutation, c.1455TG (p.Tyr485lowast), in exon 8 of dehydrogenase E1 and transketolase domain-containing 1 (DHTKD1) in all eight affected individuals, but not in other unaffected individuals in this family or in 250 unrelated normal persons. DHTKD1 mRNA expression levels in peripheral blood of affected persons were observed to be half of those in unaffected individuals. In vitro studies have shown that, compared to wild-type mRNA and DHTKD1, mutant mRNA and truncated DHTKD1 are significantly decreased by rapid mRNA decay in transfected cells. Inhibition of nonsense-mediated mRNA decay by UPF1 silencing effectively rescued the decreased levels of mutant mRNA and protein. More importantly, DHTKD1 silencing was found to lead to impaired energy production, evidenced by decreased ATP, total NAD+ and NADH, and NADH levels. In conclusion, our data demonstrate that the heterozygous nonsense mutation in DHTKD1 is one of CMT2-causative genetic alterations, implicating an important role for DHTKD1 in mitochondrial energy production and neurological development.
机译:Charcot-Marie-Tooth(CMT)疾病代表了遗传性神经病的临床和遗传异质性组。在这里,我们报告了一个由8个受影响的个体组成的5代家庭,他们患有2型CMT疾病CMT2。全基因组连锁分析表明,该疾病的表型与染色体区域10p13-14密切相关,该区域在D10S585和D10S1477之间跨越5.41 Mb。 DNA测序分析显示,在所有八个受影响的个体中,脱氢酶E1外显子8和含转酮醇酶结构域的1(DHTKD1)的无意义突变,约为c.1455T> G(p.Tyr485lowast)或不相关的250名正常人。观察到患病者外周血中DHTKD1 mRNA表达水平是未患病个体的一半。体外研究表明,与野生型mRNA和DHTKD1相比,突变的mRNA和截短的DHTKD1通过转染细胞中的快速mRNA降解而显着降低。 UPF1沉默抑制废话介导的mRNA衰变有效地挽救了降低的突变mRNA和蛋白水平。更重要的是,发现DHTKD1沉默导致能量产生受损,这可以通过ATP,总NAD +和NADH以及NADH含量降低来证明。总之,我们的数据表明DHTKD1中的杂合性无意义突变是CMT2致病性遗传变异之一,暗示DHTKD1在线粒体能量产生和神经系统发育中具有重要作用。

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