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首页> 外文期刊>Neurogenetics >Molecular analysis of NPC1 and NPC2 gene in 34 Niemann-Pick C Italian patients: identification and structural modeling of novel mutations.
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Molecular analysis of NPC1 and NPC2 gene in 34 Niemann-Pick C Italian patients: identification and structural modeling of novel mutations.

机译:34名尼曼匹克C义大利患者的NPC1和NPC2基因的分子分析:新突变的鉴定和结构建模。

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摘要

Niemann-Pick C, the autosomal recessive neuro-visceral disease resulting from a failure of cholesterol trafficking within the endosomal-lysosomal pathway, is due to mutations in NPC1 or NPC2 genes. We characterized 34 unrelated patients including 32 patients with mutations in NPC1 gene and two patients in NPC2 gene. Overall, 33 distinct genotypes were encountered. Among the 21 unpublished NPC1 alleles, 15 were due to point mutations resulting in 13 codon replacements (p.C100S, p.P237L, p.R389L, p.L472H, p.Y634C, p.S636F, p.V780G, p.Q921P, p.Y1019C, p.R1077Q, p.L1102F, p.A1187V, and p.L1191F) and in two premature stop codons (p.R934X and p.Q447X); a new mutant carried two in cis mutations, p.[L648H;M1142T] and four other NPC1 alleles were small deletions/insertions leading both to frame shifts and premature protein truncations (p.C31WfsX26, p.F284LfsX26, p.E1188fsX54, and p.T1205NfsX53). Finally, the new intronic c.464-2A>C change at the 3' acceptor splice site of intron 4 affected NPC1 messenger RNA processing. We also found a new NPC2 mutant caused by a change of the first codon (p.M1L). The novel missense mutations were further investigated by two bioinformatics approaches. Panther proein classification system computationally predicted the detrimental effect of all new missense mutations occurring at evolutionary conserved positions. The other bioinformatics approach was based on prediction of structural alterations induced by missense mutations on the NPC1 atomic models. The in silico analysis predicted protein malfunctioning and/or local folding alteration for most missense mutations. Moreover, the effects of the missense mutations (p.Y634C, p.S636F, p.L648H, and p.V780G) affecting the sterol-sensing domain (SSD) were evaluated by docking simulation between the atomic coordinates of SSD model and cholesterol.
机译:Niemann-Pick C是内体-溶酶体途径内胆固醇运输失败导致的常染色体隐性神经内脏疾病,归因于NPC1或NPC2基因的突变。我们对34例无关患者进行了鉴定,其中包括32例NPC1基因突变的患者和2例NPC2基因突变的患者。总体而言,遇到了33种不同的基因型。在21个未发表的NPC1等位基因中,有15个是由于点突变导致13个密码子替换(p.C100S,p.P237L,p.R389L,p.L472H,p.Y634C,p.S636F,p.V780G,p.Q921P ,p.Y1019C,p.R1077Q,p.L1102F,p.A1187V和p.L1191F)以及两个提前终止密码子(p.R934X和p.Q447X);一个新的突变体带有两个顺式突变,p。[L648H; M1142T],其他四个NPC1等位基因是小的缺失/插入,导致移码和蛋白质过早截短(p.C31WfsX26,p.F284LfsX26,p.E1188fsX54和p .T1205NfsX53)。最后,内含子4的3'受体剪接位点的新的内含子c.464-2A> C改变影响了NPC1信使RNA的加工。我们还发现了由第一个密码子(p.M1L)的变化引起的新的NPC2突变体。通过两种生物信息学方法进一步研究了新型错义突变。黑豹蛋白质分类系统通过计算预测了在进化保守位置发生的所有新错义突变的有害影响。另一种生物信息学方法是基于对NPC1原子模型上的错义突变引起的结构改变的预测。电子计算机分析预测了大多数错义突变的蛋白质功能异常和/或局部折叠改变。此外,通过SSD模型的原子坐标与胆固醇之间的对接模拟,评估了错义突变(p.Y634C,p.S636F,p.L648H和p.V780G)对固醇感应域(SSD)的影响。

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