Phosphoserine aminotransferase deficiency diagnosed by whole‐exome sequencing and LC–MS/MS reanalysis: A case report and review of literature

Author:

Li Jiaci123,Wei Xinping14,Sun Yuchen5,Chen Xiaofang1,Zhang Ying16,Cui Xiaoyu1,Shu Jianbo123ORCID,Li Dong14,Cai Chunquan123ORCID

Affiliation:

1. Tianjin Children's Hospital (Children's Hospital, Tianjin University) Tianjin China

2. Tianjin Pediatric Research Institute Tianjin China

3. Tianjin Key Laboratory of Birth Defects for Prevention and Treatment Tianjin China

4. Department of Neurology Tianjin Children's Hospital Tianjin China

5. College of Traditional Chinese medicine Tianjin University of Traditional Chinese Medicine Tianjin China

6. Tianjin Medical University Graduate College of Tianjin Medical University Tianjin China

Abstract

AbstractBackgroundPhosphoserine aminotransferase deficiency (PSATD) is an autosomal recessive disorder associated with hypertonia, psychomotor retardation, and acquired microcephaly. Patients with PSATD have low concentrations of serine in plasma and cerebrospinal fluid.MethodsWe reported a 2‐year‐old female child with developmental delay, dyskinesia, and microcephaly. LC–MS/MS was used to detect amino acid concentration in the blood and whole‐exome sequencing (WES) was used to identify the variants. PolyPhen‐2 web server and PyMol were used to predict the pathogenicity and changes in the 3D model molecular structure of protein caused by variants.ResultsWES demonstrated compound heterozygous variants in PSAT1, which is associated with PSATD, with a paternal likely pathogenic variant (c.235G>A, Gly79Arg) and a maternal likely pathogenic variant (c.43G>C, Ala15Pro). Reduced serine concentration in LC–MS/MS further confirmed the diagnosis of PSATD in this patient.ConclusionsOur findings demonstrate the importance of WES combined with LC–MS/MS reanalysis in the diagnosis of genetic diseases and expand the PSAT1 variant spectrum in PSATD. Moreover, we summarize all the cases caused by PSAT1 variants in the literature. This case provides a vital reference for the diagnosis of future cases.

Funder

Natural Science Foundation of Tianjin City

Publisher

Wiley

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