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首页> 外文期刊>Molecular Genetics & Genomic Medicine >Identification of a novel missense mutation in NIPAL4 gene: First 3D model construction predicted its pathogenicity
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Identification of a novel missense mutation in NIPAL4 gene: First 3D model construction predicted its pathogenicity

机译:鉴定NiP14基因中的一种新型畸形突变:第一3D模型施工预测其致病性

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Background The NIPAL4 gene is described to be implicated of Congenital Ichthyosiform Erythroderma (CIE). It encodes a magnesium transporter membrane‐associated protein, hypothetically involved in epidermal lipid processing and in lamellar body formation. The aim of this work is to investigate the causative mutation in a consanguineous Tunisian family with a clinical feature of CIE with a yellowish severe palmoplantar keratoderma. Methods Four patients were dignosed with CIE. The blood samples were collected from patients and all members of their nuclear family for mutation analysis. The novel mutation of NIPAL4 gene was analysed with several software tools to predict its pathogenicity. Then, the secondary structure and the 3D model of ichthyn was generated in silico. Results The sequencing analysis of the NIPAL4 gene in patients revealed a novel homozygous missense mutation c.534AC (p.E178D) in the exon 4. Bioinformatic tools predicted its pathogenicity. The secondary structure prediction and the 3D model construction expected the presence of 9 transmembrane helices and revealed that mutation p.E178D was located in the middle of the second transmembrane helices. Besides, the 3D model construction revealed that the p.E178D mutation is inducing a shrinking in the transport channel containing the mutated NIPA4 protein. Conclusion We found a homozygous mutation in exon 4 of NIPAL4 c.534AC (p.E178D), which was identified for the first time in our study. Bioinformatic investigations supported its involvement in the phenotype of patients with CIE. Interestingly, this mutation was located in the hypothetical transport channel cavity and leads to changes in the channel architecture, which would probably affect its transport function.
机译:背景技术描述了NiPal4基因涉及先天性Ichthyosiform erythroderma(CIE)。它编码镁转运膜相关蛋白,假设表皮脂质加工和层状体形成。这项工作的目的是研究临近突尼斯家族中的致病性突变,其中CIE的临床特征是一种淡黄色的严重棕榈术角蛋白。方法有四名患者的患者患有CIE。从患者和核心家庭的所有成员收集血液样本进行突变分析。用几种软件工具分析NiP14基因的新突变,以预测其致病性。然后,在硅中产生了ICHThthyn的二级结构和3D模型。结果患者含量的序号分析揭示了外显子4的新型纯合物畸形突变C.534A> C(P.E178D)。生物信息工具预测其致病性。二次结构预测和3D模型构建期望9个跨膜螺旋的存在,并显示突变P.e178D位于第二跨膜螺旋的中间。此外,3D模型施工显示P.E178D突变在包含突变的NIPA4蛋白的运输通道中诱导收缩。结论我们发现了NiPal4 C.534A> C(P.E178D)的外显子4中的纯合突变,这是我们研究中的第一次鉴定的。生物信息研究支持其参与CIE患者的表型。有趣的是,这种突变位于假设的传输通道腔中,并导致通道架构的变化,这可能会影响其运输功能。

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