Identification of 8 novel gene variants in primary hyperoxaluria in 21 Chinese children with urinary stones
- PMID: 30488096
- DOI: 10.1007/s00345-018-2563-5
Identification of 8 novel gene variants in primary hyperoxaluria in 21 Chinese children with urinary stones
Abstract
Purpose: We analyzed primary hyperoxaluria (PH) genotype and phenotype in Chinese children. Vitamin B6 response in the patients with genetically confirmed PH1 was also studied.
Methods: We, respectively, analyzed 80 children with urinary stones. Sixty-four children were diagnosed with hyperoxaluria. Twenty-one children consented to genetic evaluation (targeted gene panel-based and whole-exome sequencing), and DNA was obtained from the children and both the parents.
Results: PH accounted for 57.1% (12/21) of hyperoxaluria cases. We reported 12 PH cases, including 5 PH1, 1 PH2, and 6 PH3 cases; 2 novel mutations in AGXT and GRHPR each and 4 HOGA1 mutations were identified. The mutations in AGXT and GRHPR were c0.1161C>A and c0.551C>A, and c0.370C>T and c0.864_865delTG, respectively. Four HOGA1 mutations, c0.290G>A, c0.110G>A, c0.554C>T and c0.834_834 + 1delinsTT, were not reported previously. The average urine Ox 24 level in the PH patients was 0.91 mmol/1.73 m2. Moreover, the average urine Ox 24 level in the PH1 patients (1.07 mmol/1.73 m2) was higher than that in the PH2 and PH3 patients (0.73 mmol/1.73 m2 and 0.71 mmol/1.73 m2, respectively). The eGFR of the PH1 patients (76.86 mL/min) was lower than that of the PH2 and PH3 patients (132 mL/min and 136 mL/min, respectively).
Conclusions: PH incidence was higher than the reported PH incidence in children with urinary stones. Hence, we suggested that genetic examination was necessary for all the children with hyperoxaluria. These novel mutations broaden the range of known gene mutations in PH.
Keywords: AGXT; GRHPR; HOGA1; Primary hyperoxaluria.
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References
-
- Cochat P, Deloraine A, Rotily M, Olive F, Liponski I, Deries N (1995) Epidemiology of primary hyperoxaluria type 1. Societe de Nephrologie and the Societe de Nephrologie Pediatrique. Nephrol Dial Transplant 10(Suppl 8):3–7 - DOI
-
- van Woerden CS, Groothoff JW, Wanders RJ, Davin JC, Wijburg FA (2003) Primary hyperoxaluria type 1 in The Netherlands: prevalence and outcome. Nephrol Dial Transplant 18(2):273–279 - DOI
-
- Harambat J, van Stralen KJ, Espinosa L, Groothoff JW, Hulton SA, Cerkauskiene R, Schaefer F, Verrina E, Jager KJ, Cochat P, European Society for Pediatric Nephrology/European Renal Association-European D, Transplant Association R (2012) Characteristics and outcomes of children with primary oxalosis requiring renal replacement therapy. Clin J Am Soc Nephrol CJASN 7(3):458–465. https://doi.org/10.2215/CJN.07430711 - DOI - PubMed
-
- Williams EL, Acquaviva C, Amoroso A, Chevalier F, Coulter-Mackie M, Monico CG, Giachino D, Owen T, Robbiano A, Salido E, Waterham H, Rumsby G (2009) Primary hyperoxaluria type 1: update and additional mutation analysis of the AGXT gene. Hum Mutat 30(6):910–917. https://doi.org/10.1002/humu.21021 - DOI - PubMed
-
- Hoppe B (2012) An update on primary hyperoxaluria. Nat Rev Nephrol 8(8):467–475. https://doi.org/10.1038/nrneph.2012.113 - DOI - PubMed
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