Carbamoylphosphate synthetase 1 (CPS1) deficiency: clinical, biochemical, and molecular characterization in Malaysian patients

被引:18
|
作者
Ali, Ernie Zuraida [1 ]
Khalid, Mohd Khairul Nizam Mohd [1 ]
Yunus, Zabedah Md [2 ]
Yakob, Yusnita [1 ]
Chin, Chen Bee [3 ]
Latif, Kartikasalwah Abd [4 ]
Hock, Ngu Lock [3 ]
机构
[1] Inst Med Res, Specialised Diagnost Ctr, Mol Diagnost & Prot Unit, Kuala Lumpur 50588, Malaysia
[2] Inst Med Res, Specialised Diagnost Ctr, Biochem Unit, Kuala Lumpur 50588, Malaysia
[3] Kuala Lumpur Hosp, Dept Med Genet, Kuala Lumpur 50588, Malaysia
[4] Kuala Lumpur Hosp, Dept Diagnost Imaging, Kuala Lumpur 50588, Malaysia
关键词
Carbamoyl phosphate synthetase 1; CPS1; gene; deficiency; Hyperammonemia; Mutation; PHOSPHATE SYNTHETASE; JAPANESE PATIENTS; I GENE; EXPRESSION; MUTATIONS;
D O I
10.1007/s00431-015-2644-z
中图分类号
R72 [儿科学];
学科分类号
100202 ;
摘要
Carbamoyl phosphate synthetase 1 (CPS1) deficiency is a rare autosomal recessive disorder of ureagenesis presenting as life-threatening hyperammonemia. In this study, we present the main clinical features and biochemical and molecular data of six Malaysian patients with CPS1 deficiency. All the patients have neonatal-onset symptoms, initially diagnosed as infections before hyperammonemia was recognized. They have typical biochemical findings of hyperglutaminemia, hypocitrullinemia, and low to normal urinary excretion of orotate. One neonate succumbed to the first hyperammonemic decompensation. Five neonatal survivors received long-term treatment consisting of dietary protein restriction and ammonia-scavenging drugs. They have delayed neurocognitive development of varying severity. Genetic analysis revealed eight mutations in CPS1 gene, five of which were not previously reported. Five mutations were missense changes while another three were predicted to create premature stop codons. In silico analyses showed that these new mutations affected different CPS1 enzyme domains and were predicted to interrupt interactions at enzyme active sites, disturb local enzyme conformation, and destabilize assembly of intact enzyme complex. Conclusion: All mutations are private except one mutation; p.Ile1254Phe was found in three unrelated families. Identification of a recurrent p.Ile1254Phe mutation suggests the presence of a common and unique mutation in our population. Our study also expands the mutational spectrum of the CPS1 gene.
引用
收藏
页码:339 / 346
页数:8
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