Literature DB >> 30870574

Pyruvate carboxylase deficiency type A and type C: Characterization of five novel pathogenic variants in PC and analysis of the genotype-phenotype correlation.

Emanuele G Coci1,2, Vytautas Gapsys3, Natasha Shur4,5, Yoon Shin-Podskarbi6, Bert L de Groot3, Kathryn Miller4, Jerry Vockley7, Neal Sondheimer8, Rebecca Ganetzky9, Peter Freisinger10.   

Abstract

Pyruvate carboxylase deficiency (PCD) is caused by biallelic mutations of the PC gene. The reported clinical spectrum includes a neonatal form with early death (type B), an infantile fatal form (type A), and a late-onset form with isolated mild intellectual delay (type C). Apart from homozygous stop-codon mutations leading to type B PCD, a genotype-phenotype correlation has not otherwise been discernible. Indeed, patients harboring biallelic heterozygous variants leading to PC activity near zero can present either with a fatal infantile type A or with a benign late onset type C form. In this study, we analyzed six novel patients with type A (three) and type C (three) PCD, and compared them with previously reported cases. First, we observed that type C PCD is not associated to homozygous variants in PC. In silico modeling was used to map former and novel variants associated to type A and C PCD, and to predict their potential effects on the enzyme structure and function. We found that variants lead to type A or type C phenotype based on the destabilization between the two major enzyme conformers. In general, our study on novel and previously reported patients improves the overall understanding on type A and C PCD.
© 2019 Wiley Periodicals, Inc.

Entities:  

Keywords:  PC tetramerization domain; biotin carboxyl carrier protein domain; biotin carboxylase domain; carboxyl transferase domain; neurodevelopmental delay; pyruvate carboxylase; pyruvate carboxylase deficiency

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Year:  2019        PMID: 30870574     DOI: 10.1002/humu.23742

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  3 in total

1.  Expanding the genetic spectrum of the pyruvate carboxylase deficiency with novel missense, deep intronic and structural variants.

Authors:  Polina Tsygankova; Igor Bychkov; Marina Minzhenkova; Natalia Pechatnikova; Lyudmila Bessonova; Galina Buyanova; Irina Naumchik; Nikita Beskorovainiy; Vyacheslav Tabakov; Yulia Itkis; Nadezhda Shilova; Ekaterina Zakharova
Journal:  Mol Genet Metab Rep       Date:  2022-06-23

2.  PC Splice-Site Variant c.1825+5G>A Caused Intron Retention in a Patient With Pyruvate Carboxylase Deficiency: A Case Report.

Authors:  DongYing Tao; HuiQin Zhang; Jingmin Yang; HuanHong Niu; JingJing Zhang; Minghua Zeng; ShengQuan Cheng
Journal:  Front Pediatr       Date:  2022-04-28       Impact factor: 3.418

3.  A Unique Case of Pyruvate Carboxylase Deficiency.

Authors:  Jessica Hidalgo; Leticia Campoverde; Juan Fernando Ortiz; Samir Ruxmohan; Ahmed Eissa-Garcés
Journal:  Cureus       Date:  2021-05-15
  3 in total

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