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1
A European multicenter study of phenylalanine hydroxylase deficiency: classification of 105 mutations and a general system for genotype-based prediction of metabolic phenotype.一项关于苯丙氨酸羟化酶缺乏症的欧洲多中心研究:105种突变的分类及基于基因型预测代谢表型的通用系统
Am J Hum Genet. 1998 Jul;63(1):71-9. doi: 10.1086/301920.
2
Validation of PAH genotype-based predictions of metabolic phenylalanine hydroxylase deficiency phenotype: investigation of PKU/MHP patients from Lithuania.基于苯丙酮尿症(PAH)基因型预测代谢性苯丙氨酸羟化酶缺乏表型的验证:立陶宛苯丙酮尿症/轻度高苯丙氨酸血症(PKU/MHP)患者的调查
Med Sci Monit. 2003 Mar;9(3):CR142-6.
3
Variations in genotype-phenotype correlations in phenylalanine hydroxylase deficiency in Chinese Han population.中国汉族人群苯丙氨酸羟化酶缺乏症基因型-表型相关性的变异。
Gene. 2013 Oct 15;529(1):80-7. doi: 10.1016/j.gene.2013.07.079. Epub 2013 Aug 7.
4
Mutations in the phenylalanine hydroxylase gene: genetic determinants for the phenotypic variability of hyperphenylalaninemia.苯丙氨酸羟化酶基因突变:高苯丙氨酸血症表型变异的遗传决定因素。
Acta Paediatr Suppl. 1994 Dec;407:49-56. doi: 10.1111/j.1651-2227.1994.tb13451.x.
5
Mutation analysis anticipates dietary requirements in phenylketonuria.
Eur J Pediatr. 2000 Oct;159 Suppl 2:S150-3. doi: 10.1007/pl00014381.
6
Human phenylalanine hydroxylase mutations and hyperphenylalaninemia phenotypes: a metanalysis of genotype-phenotype correlations.人类苯丙氨酸羟化酶突变与高苯丙氨酸血症表型:基因型-表型相关性的荟萃分析
Am J Hum Genet. 1997 Dec;61(6):1309-17. doi: 10.1086/301638.
7
The Genetic Landscape and Epidemiology of Phenylketonuria.苯丙酮尿症的遗传景观和流行病学。
Am J Hum Genet. 2020 Aug 6;107(2):234-250. doi: 10.1016/j.ajhg.2020.06.006. Epub 2020 Jul 14.
8
Phenylalanine hydroxylase gene mutations in the United States: report from the Maternal PKU Collaborative Study.美国苯丙氨酸羟化酶基因突变:母源性苯丙酮尿症协作研究报告
Am J Hum Genet. 1996 Jul;59(1):84-94.
9
Relationship among genotype, biochemical phenotype, and cognitive performance in females with phenylalanine hydroxylase deficiency: report from the Maternal Phenylketonuria Collaborative Study.苯丙氨酸羟化酶缺乏女性的基因型、生化表型与认知表现之间的关系:来自母婴苯丙酮尿症协作研究的报告
Pediatrics. 1999 Aug;104(2 Pt 1):258-62. doi: 10.1542/peds.104.2.258.
10
Phenylalanine hydroxylase deficiency in the Slovak population: genotype-phenotype correlations and genotype-based predictions of BH4-responsiveness.斯洛伐克人群中的苯丙氨酸羟化酶缺乏症:基因型-表型相关性以及 BH4 反应性的基于基因型的预测。
Gene. 2013 Sep 10;526(2):347-55. doi: 10.1016/j.gene.2013.05.057. Epub 2013 Jun 10.

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Sapropterin Dihydrochloride Responsiveness in Phenylketonuria: A Case Series Exploring Gaps in Comprehensive Patient Monitoring.苯丙酮尿症中盐酸沙丙蝶呤的反应性:探索综合患者监测差距的病例系列
Nutrients. 2025 Sep 7;17(17):2892. doi: 10.3390/nu17172892.
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Metabolomics and Lipidomics Explore Phenotype-Specific Molecular Signatures for Phenylketonuria.代谢组学和脂质组学探索苯丙酮尿症的表型特异性分子特征。
Int J Mol Sci. 2025 Jul 25;26(15):7171. doi: 10.3390/ijms26157171.
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Inherited metabolic disorders: presentation, clinical types, laboratory diagnosis and genetic markers.遗传性代谢紊乱:临床表现、临床类型、实验室诊断及遗传标记物
Orphanet J Rare Dis. 2025 Aug 11;20(1):422. doi: 10.1186/s13023-025-03979-8.
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Genotype-Phenotype Correlation in a Large Cohort of Eastern Sicilian Patients Affected by Phenylketonuria: Newborn Screening Program, Clinical Features, and Follow-Up.西西里岛东部大量苯丙酮尿症患者的基因型-表型相关性:新生儿筛查项目、临床特征及随访
Nutrients. 2025 Jan 21;17(3):379. doi: 10.3390/nu17030379.
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Neurovascular retinal impairment in early-treated adults with phenylketonuria.早期接受治疗的苯丙酮尿症成年患者的视网膜神经血管损伤
Front Neurol. 2024 Jun 21;15:1305984. doi: 10.3389/fneur.2024.1305984. eCollection 2024.
6
Delays in Newborn Screening for Phenylketonuria from Birth to Diagnosis and Factors Affecting This.从出生到诊断苯丙酮尿症的新生儿筛查延迟及影响因素
Children (Basel). 2024 May 9;11(5):571. doi: 10.3390/children11050571.
7
In Silico Structural Protein Evaluation of the Phenylalanine Hydroxylase p.(Tyr77His) Variant Associated with Benign Hyperphenylalaninemia as Identified through Mexican Newborn Screening.通过墨西哥新生儿筛查鉴定出的与良性高苯丙氨酸血症相关的苯丙氨酸羟化酶p.(Tyr77His)变体的计算机结构蛋白评估
Children (Basel). 2023 Nov 28;10(12):1865. doi: 10.3390/children10121865.
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Detection of Single-Nucleotide and Copy Number Defects Underlying Hyperphenylalaninemia by Next-Generation Sequencing.通过下一代测序检测高苯丙氨酸血症潜在的单核苷酸和拷贝数缺陷
Biomedicines. 2023 Jul 4;11(7):1899. doi: 10.3390/biomedicines11071899.
9
Molecular characterization of phenylketonuria patients from the North Region of Brazil: State of Pará.巴西北部地区苯丙酮尿症患者的分子特征:帕拉州。
Mol Genet Genomic Med. 2023 Oct;11(10):e2224. doi: 10.1002/mgg3.2224. Epub 2023 Jul 8.
10
Allelic phenotype prediction of phenylketonuria based on the machine learning method.基于机器学习方法的苯丙酮尿症等位基因表型预测。
Hum Genomics. 2023 Mar 31;17(1):34. doi: 10.1186/s40246-023-00481-9.

本文引用的文献

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Recommendations for a nomenclature system for human gene mutations. Nomenclature Working Group.人类基因突变命名系统的建议。命名工作组。
Hum Mutat. 1998;11(1):1-3. doi: 10.1002/(SICI)1098-1004(1998)11:1<1::AID-HUMU1>3.0.CO;2-O.
2
Human phenylalanine hydroxylase mutations and hyperphenylalaninemia phenotypes: a metanalysis of genotype-phenotype correlations.人类苯丙氨酸羟化酶突变与高苯丙氨酸血症表型:基因型-表型相关性的荟萃分析
Am J Hum Genet. 1997 Dec;61(6):1309-17. doi: 10.1086/301638.
3
PAH Mutation Analysis Consortium Database: 1997. Prototype for relational locus-specific mutation databases.PAH突变分析联盟数据库:1997年。关系型基因座特异性突变数据库的原型。
Nucleic Acids Res. 1998 Jan 1;26(1):220-5. doi: 10.1093/nar/26.1.220.
4
Relationship between mutation genotype and biochemical phenotype in a heterogeneous Spanish phenylketonuria population.西班牙苯丙酮尿症异质群体中突变基因型与生化表型的关系。
Eur J Hum Genet. 1997 Jul-Aug;5(4):196-202.
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Methods for detection of point mutations: performance and quality assessment. IFCC Scientific Division, Committee on Molecular Biology Techniques.点突变检测方法:性能与质量评估。国际临床化学和检验医学联合会科学部,分子生物学技术委员会。
Clin Chem. 1997 Jul;43(7):1114-28.
6
Three prevalent mutations in a patient with phenylalanine hydroxylase deficiency: implications for diagnosis and genetic counselling.苯丙氨酸羟化酶缺乏症患者的三种常见突变:对诊断和遗传咨询的意义。
J Med Genet. 1996 Feb;33(2):161-4. doi: 10.1136/jmg.33.2.161.
7
Phenylketonuria genotypes correlated to metabolic phenotype groups in Norway.挪威苯丙酮尿症基因型与代谢表型组的相关性。
Eur J Pediatr. 1996 Jul;155(7):554-60. doi: 10.1007/BF01957904.
8
PAH deficiency in Italy: correlation of genotype with phenotype in the Sicilian population.意大利的苯丙酮尿症缺乏症:西西里人群中基因型与表型的相关性
J Inherit Metab Dis. 1996;19(1):15-24. doi: 10.1007/BF01799343.
9
PKU mutation G46S is associated with increased aggregation and degradation of the phenylalanine hydroxylase enzyme.苯丙酮尿症突变G46S与苯丙氨酸羟化酶的聚集增加和降解有关。
Hum Mutat. 1996;7(3):228-38. doi: 10.1002/(SICI)1098-1004(1996)7:3<228::AID-HUMU7>3.0.CO;2-6.
10
Phenylalanine hydroxylase genotypes, predicted residual enzyme activity and phenotypic parameters of diagnosis and treatment of phenylketonuria.
Eur J Pediatr. 1996 Jul;155 Suppl 1:S11-5. doi: 10.1007/pl00014222.

一项关于苯丙氨酸羟化酶缺乏症的欧洲多中心研究:105种突变的分类及基于基因型预测代谢表型的通用系统

A European multicenter study of phenylalanine hydroxylase deficiency: classification of 105 mutations and a general system for genotype-based prediction of metabolic phenotype.

作者信息

Guldberg P, Rey F, Zschocke J, Romano V, François B, Michiels L, Ullrich K, Hoffmann G F, Burgard P, Schmidt H, Meli C, Riva E, Dianzani I, Ponzone A, Rey J, Güttler F

机构信息

John F. Kennedy Institute, Glostrup, Denmark.

出版信息

Am J Hum Genet. 1998 Jul;63(1):71-9. doi: 10.1086/301920.

DOI:10.1086/301920
PMID:9634518
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1377241/
Abstract

Phenylketonuria (PKU) and mild hyperphenylalaninemia (MHP) are allelic disorders caused by mutations in the gene encoding phenylalanine hydroxylase (PAH). Previous studies have suggested that the highly variable metabolic phenotypes of PAH deficiency correlate with PAH genotypes. We identified both causative mutations in 686 patients from seven European centers. On the basis of the phenotypic characteristics of 297 functionally hemizygous patients, 105 of the mutations were assigned to one of four arbitrary phenotype categories. We proposed and tested a simple model for correlation between genotype and phenotypic outcome. The observed phenotype matched the predicted phenotype in 79% of the cases, and in only 5 of 184 patients was the observed phenotype more than one category away from that expected. Among the seven contributing centers, the proportion of patients for whom the observed phenotype did not match the predicted phenotype was 4%-23% (P<.0001), suggesting that differences in methods used for mutation detection or phenotype classification may account for a considerable proportion of genotype-phenotype inconsistencies. Our data indicate that the PAH-mutation genotype is the main determinant of metabolic phenotype in most patients with PAH deficiency. In the present study, the classification of 105 PAH mutations may allow the prediction of the biochemical phenotype in >10,000 genotypes, which may be useful for the management of hyperphenylalaninemia in newborns.

摘要

苯丙酮尿症(PKU)和轻度高苯丙氨酸血症(MHP)是由编码苯丙氨酸羟化酶(PAH)的基因突变引起的等位基因疾病。先前的研究表明,PAH缺乏症高度可变的代谢表型与PAH基因型相关。我们从七个欧洲中心的686名患者中鉴定出了两种致病突变。根据297名功能半合子患者的表型特征,将其中105种突变归入四个任意表型类别之一。我们提出并测试了一个基因型与表型结果之间相关性的简单模型。在79%的病例中,观察到 的表型与预测的表型相符,在184名患者中只有5名患者观察到的表型与预期表型相差超过一个类别。在七个参与中心中,观察到的表型与预测表型不匹配的患者比例为4%-23%(P<0.0001),这表明用于突变检测或表型分类的方法差异可能是基因型-表型不一致的一个相当大的原因。我们的数据表明,PAH突变基因型是大多数PAH缺乏症患者代谢表型的主要决定因素。在本研究中,105种PAH突变的分类可能有助于预测超过10000种基因型的生化表型,这可能对新生儿高苯丙氨酸血症的管理有用。