Central European Institute of Technology, Masaryk University, Brno, Czech Republic.
Clin Chim Acta. 2013 Apr 18;419:1-10. doi: 10.1016/j.cca.2013.01.006. Epub 2013 Jan 26.
Hyperphenylalaninemia (HPA) is one of the most common inherited metabolic disorders caused by deficiency of the enzyme phenylalanine hydroxylase (PAH). HPA is associated with mutations in the PAH gene, which leads to reduced protein stability and/or impaired catalytic function. Currently, almost 700 different disease-causing mutations have been described. The impact of mutations on enzyme activity varies ranging from classical PKU, mild PKU, to non-PKU HPA phenotype.
We provide results of molecular genetic diagnostics of 665 Czech unrelated HPA patients, structural analysis of missense mutations associated with classical PKU and non-PKU HPA phenotype, and prediction of effects of 6 newly discovered HPA missense mutations using bioinformatic approaches and Molecular Dynamics simulations.
Ninety-eight different types of mutations were indentified. Thirteen of these were novel (6 missense, 2 nonsense, 1 splicing, and 4 small gene rearrangements). Structural analysis revealed that classical PKU mutations are more non-conservative compared to non-PKU HPA mutations and that specific sequence and structural characteristics of a mutation might be critical when distinguishing between non-PKU HPA and classical PKU mutations. The greatest impact was predicted for the p.(Phe263Ser) mutation while other novel mutations p.(Asn167Tyr), p.(Thr200Asn), p.(Asp229Gly), p.(Leu358Phe), and p.(Ile406Met) were found to be less deleterious.
高苯丙氨酸血症(HPA)是由苯丙氨酸羟化酶(PAH)缺乏引起的最常见的遗传性代谢紊乱之一。HPA 与 PAH 基因突变有关,导致蛋白质稳定性降低和/或催化功能受损。目前,已经描述了近 700 种不同的致病突变。突变对酶活性的影响范围从经典 PKU、轻度 PKU 到非 PKU HPA 表型不等。
我们提供了 665 名捷克无关 HPA 患者的分子遗传学诊断结果,对与经典 PKU 和非 PKU HPA 表型相关的错义突变进行结构分析,并使用生物信息学方法和分子动力学模拟预测 6 种新发现的 HPA 错义突变的影响。
鉴定出 98 种不同类型的突变。其中 13 种是新的(6 种错义突变、2 种无义突变、1 种剪接突变和 4 种小基因重排)。结构分析表明,经典 PKU 突变比非 PKU HPA 突变更不保守,并且突变的特定序列和结构特征在区分非 PKU HPA 和经典 PKU 突变时可能是关键的。预测 p.(Phe263Ser)突变的影响最大,而其他新突变 p.(Asn167Tyr)、p.(Thr200Asn)、p.(Asp229Gly)、p.(Leu358Phe)和 p.(Ile406Met)被发现的危害性较小。