Development of a mutation hotspot detection kit for the phenylalanine hydroxylase gene by ARMS-PCR combined with fluorescent probe technology

Author:

Qiang Rong123ORCID,Wang Lin3,He JinHua4,Xu Wei Jie5,Li Wei3,Cai Na3,Wang Xiao Bin3,Zhang RuiXue3,Zhang Li Ping3,Ma Xiao Ping3,Wei Chen3,Song ChengRong3,Yu WenWen3,Wang Xiang12,Li Xu12

Affiliation:

1. Center for Translational Medicine, First Affiliated Hospital of Xi’an Jiaotong University, Xi’an 710061, P.R. China

2. Key Laboratory for Tumor Precision Medicine of Shaanxi Province, First Affiliated Hospital of Xi’an Jiaotong University, Xi’an 710061, P.R. China

3. Medical Heredity Research Center, Northwest Women’s and Children’s Hospital, Shaanxi, Xi’an 710003, P.R. China

4. Department of Laboratory Medicine, Central Hospital of Panyu District, Guangzhou, Guangdong 511400, P.R. China

5. Molecular Diagnosis Department, Guangzhou Lanji Biotechnology Co., Ltd., Guangzhou, Guangdong 510665, P.R. China

Abstract

Abstract To develop a screening kit for detecting mutation hotspots of the phenylalanine hydroxylase (PAH) gene. Thirteen exons of the PAH gene were sequenced in 84 cases with phenylketonuria (PKU) diagnosed during neonatal genetic and metabolic disease screening in Shaanxi province, and their mutations were analyzed. We designed and developed a screening kit to detect nine mutation sites covering more than 50% of the PAH mutations found in Shaanxi province (c.728G>A, c.1197A>T, c.331C>T, c.1068C>A, c.611A>G, c.1238G>C, c.721C>T, c.442-1G>A, and c.158G>A) by using amplification refractory mutation system-polymerase chain reaction (ARMS-PCR) combined with fluorescent probe technology. Peripheral blood and dried blood samples from PKU families were used for clinical verification of the newly developed kit. PAH gene mutations were detected in 84 children diagnosed with PKU. A total of 159 mutant alleles were identified, consisting of 100 missense mutations, 28 shear mutations, 24 nonsense mutations, and 7 deletion mutations. Exon 7 had the highest mutation frequency (32.08%). Among them, the mutation frequency of p.R243Q was the highest, accounting for 20.13% of all mutations, followed by p.R111X, IVS4-1G>A, EX6-96A>G, and p.R413P; these five loci accounted for 47.17% (75/159) of all mutations. In addition, we identified three previously unreported PAH gene mutations (p.C334X, p.G46D, and p.G256D). Fifteen mutation sites were identified in the 47 PAH carriers identified by next-generation sequencing (NGS), which were verified by the newly developed kit, with an agreement rate of 100%. This newly developed kit based on ARMS-PCR combined with fluorescent probe technology can be used to detect common PAH gene mutations.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry,Biophysics

Reference12 articles.

1. Genetics of phenylketonuria: then and now;Blau;Hum. Mutat.,2016

2. Phenylalanine hydroxylase deficiency: diagnosis and management guideline;Vockley;Genet. Med.,2014

3. ACMG position statement on prenatal/preconception expanded carrier screening;Grody;Genet. Med.,2013

4. Consensus on diagnosis and treatment of hyperphenylalaninemia;Neonatal screening group of birth defect prevention and control committee of chinese preventive medicine association;Chinese J. Pediatrics,2014

5. Expanded newborn screening for inborn errors of metabolism and genetic characteristics in a chinese population;Kejian;Front. Genet.,2018

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