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尼曼-匹克C型病:三种NPC2突变的功能特征及NPC2患者的临床与分子学最新进展

Niemann-Pick C disease: functional characterization of three NPC2 mutations and clinical and molecular update on patients with NPC2.

作者信息

Verot L, Chikh K, Freydière E, Honoré R, Vanier M T, Millat G

机构信息

INSERM, Unit 820, Métabolomique et Maladies Métaboliques, Lyon F-69372, France.

出版信息

Clin Genet. 2007 Apr;71(4):320-30. doi: 10.1111/j.1399-0004.2007.00782.x.

Abstract

Niemann-Pick type C disease (NPC), a neurovisceral disorder characterized by accumulation of unesterified cholesterol and glycolipids in the lysosomal/late endosomal system, is due to mutations on either the NPC1 or the NPC2 genes. We report the diagnosis of six unrelated patients with NPC2, all with homozygous mutations. We further attempted functional characterization of the p.P120S, p.Q146X and IVS1 + 2 t>c mutations under native conditions. This was achieved by immunoblotting and immunocytofluorescence microscopy on cultured skin fibroblasts and in silico modeling. IVS1 + 2 t>c led to multiple transcripts, with only abnormally spliced cDNAs. Among the three NPC2 variants, only p.P120S led to detectable amounts of an immunoreactive protein. This protein showed a normal lysosomal localization. Our results suggest that the p.P120S mutation, the first naturally occurring missense mutation located in the cholesterol-binding Evolutionarily Constrained Regions D domain, results in reduced amounts of a protein capable to reach the lysosome, but unable to efficiently bind cholesterol. The patient had a juvenile neurological onset form of the disease. An update of the 22 families with mutations in the NPC2 gene, currently known to us, confirms the good genotype-phenotype correlations seen in this disorder. Characterization of more naturally occurring NPC2 mutations may help to dissect further the functional domains of the protein.

摘要

尼曼-匹克C型病(NPC)是一种神经内脏疾病,其特征是未酯化胆固醇和糖脂在溶酶体/晚期内体系统中蓄积,由NPC1或NPC2基因突变引起。我们报告了6例无关的NPC2患者的诊断,所有患者均为纯合突变。我们进一步尝试在天然条件下对p.P120S、p.Q146X和IVS1 + 2 t>c突变进行功能表征。这是通过对培养的皮肤成纤维细胞进行免疫印迹和免疫细胞荧光显微镜检查以及计算机模拟实现的。IVS1 + 2 t>c导致多种转录本,只有异常剪接的cDNA。在这三种NPC2变体中,只有p.P120S导致可检测量的免疫反应性蛋白。该蛋白显示出正常的溶酶体定位。我们的结果表明,p.P120S突变是位于胆固醇结合进化保守区域D结构域的首个自然发生的错义突变,导致能够到达溶酶体但无法有效结合胆固醇的蛋白质数量减少。该患者患有青少年神经发病型疾病。我们目前所知的22个NPC2基因突变家族的最新情况证实了该疾病中良好的基因型-表型相关性。对更多自然发生的NPC2突变进行表征可能有助于进一步剖析该蛋白的功能结构域。

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