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首页> 外文期刊>Journal of bone and mineral metabolism >Novel heterozygous tissue-nonspecific alkaline phosphatase (TNAP) gene mutations causing lethal perinatal hypophosphatasia
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Novel heterozygous tissue-nonspecific alkaline phosphatase (TNAP) gene mutations causing lethal perinatal hypophosphatasia

机译:新型致死性组织非特异性碱性磷酸酶(TNAP)基因突变引起致死的围产期低磷酸血症

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Hypophosphatasia is a rare inherited disorder characterized by poor bone mineralization and deficiency of alkaline phosphatase activity. It is caused by mutations in the liver/bone/kidney alkaline phosphatase gene encoding the tissue-nonspecific isoenzyme of alkaline phosphatase (TNAP), which displays many allelic heterogeneities, leading to different clinical phenotypes. This study reports the case of a patient diagnosed with lethal perinatal hypophosphatasia. His gene analysis showed compound heterozygocity of two novel mutations: c.650del- TinsCTAA and c.984-986delCTT, which led to p.217del- VinsAK and p.328delF, respectively. The two mutations originated separately from his parents, consistent with autosomal recessive perinatal hypophosphatasia. For these two novel mutations, we analyzed their functions through three-dimensional structural analysis. This revealed that V217 is located in the β-sheet area, V217 is deleted, and insertion of alanine and lysine alter the secondary structure, causing instability in the hydrophobic region, which may influence the metal-binding vicinity. This mutant structure loses its catalytic activity. Deletion of 328F also results in protein structural alteration and affects TNAP functions. These results may provide an explanation of the two novel mutated alleles correlating with the lethal phenotype of our patient. In conclusion, we demonstrated the case of a patient with lethal perinatal hypophosphatasia caused by two novel heterozygous mutations.
机译:低磷血症是一种罕见的遗传性疾病,其特征是骨骼矿化不良和碱性磷酸酶活性不足。它是由肝脏/骨骼/肾脏碱性磷酸酶基因中的突变引起的,该基因编码碱性磷酸酶(TNAP)的组织非特异性同工酶,该酶表现出许多等位基因异质性,导致不同的临床表型。这项研究报告了一例诊断为致命的围产期低磷血症的患者。他的基因分析显示了两个新突变的复合杂合性:c.650del- TinsCTAA和c.984-986delCTT,分别导致了p.217del- VinsAK和p.328delF。这两个突变分别来自他的父母,与常染色体隐性围生期低磷血症相一致。对于这两个新颖的突变,我们通过三维结构分析来分析其功能。这表明V217位于β-折叠区域中,V217被缺失,丙氨酸和赖氨酸的插入改变了二级结构,导致疏水区域的不稳定性,这可能影响金属结合附近。该突变体结构失去了催化活性。 328F的缺失还导致蛋白质结构改变并影响TNAP功能。这些结果可能提供了与我们患者的致死表型相关的两个新的突变等位基因的解释。总之,我们证明了由两个新的杂合突变引起的致死性围产期低磷酸血症的病例。

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