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Identification and Functional Characterization of CLCN1 Mutations Found in Nondystrophic Myotonia Patients

机译:非营养性肌强直患者中发现的CLCN1突变的鉴定和功能表征

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Mutations in the gene coding for the skeletal muscle Cl- channel (CLCN1) lead to dominant or recessive myotonia. Here, we identified and characterized CLCN1 mutations in Costa Rican patients, who had been clinically diagnosed with myotonic dystrophy type 1 but who were negative for DM1 mutations. CLCN1 mutations c.501C>G, p.F167L and c.1235A>C, p.Q412P appeared to have recessive inheritance but patients had atypical clinical phenotypes; c.313C>T, p.R105C was found in combination with c.501C>G, p.F167L in an apparently recessive family and the c.461A>G, p.Q154R variant was associated with a less clear clinical picture. In Xenopus oocytes, none of the mutations exhibited alterations of fast or slow gating parameters or single channel conductance, and mutations p.R105C, p.Q154R, and p.F167L were indistinguishable from wild-type (WT). p.Q412P displayed a dramatically reduced current density, surface expression and exerted no dominant negative effect in the context of the homodimeric channel. Fluorescently tagged constructs revealed that p.Q412P is expressed inefficiently. Our study confirms p.F167L and p.R105C as myotonia mutations in the Costa Rican population, whereas p.Q154R may be a benign variant. p.Q412P most likely induces a severe folding defect, explaining the lack of dominance in patients and expression systems, but has WT properties once expressed in the plasma membrane.
机译:编码骨骼肌Cl通道(CLCN1)的基因突变导致显性或隐性肌强直。在这里,我们在哥斯达黎加患者中鉴定并鉴定了CLCN1突变,这些患者在临床上被诊断出患有1型强直性营养不良,但DM1突变阴性。 CLCN1突变c.501C> G,p.F167L和c.1235A> C,p.Q412P似乎具有隐性遗传,但患者具有非典型的临床表型。发现c.313C> T,p.R105C与c.501C> G,p.F167L联合出现在一个明显的隐性家族中,而c.461A> G,p.Q154R变体的临床表现不太清晰。在非洲爪蟾卵母细胞中,没有任何突变表现出快速或慢速门控参数或单通道电导的变化,并且p.R105C,p.Q154R和p.F167L突变与野生型(WT)没有区别。 p.Q412P在同型二聚体通道中显示出电流密度,表面表达的显着降低,并且没有发挥主要的负面作用。荧光标记的构建体表明p.Q412P表达效率低下。我们的研究证实了p.F167L和p.R105C是哥斯达黎加人群中的肌强直突变,而p.Q154R可能是良性变异。 p.Q412P最有可能引起严重的折叠缺陷,这说明在患者和表达系统中缺乏优势,但一旦在质膜中表达,便具有WT特性。

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