| Literature DB >> 24934730 |
Guo-min Li, Hong Xu1, Qian Shen, Yi-nv Gong, Xiao-yan Fang, Li Sun, Hai-mei Liu, Yu An.
Abstract
BACKGROUND: Primary hyperoxaluria type 1 is a rare autosomal recessive disease of glyoxylate metabolism caused by a defect in the liver-specific peroxisomal enzyme alanine:glyoxylate aminotransferase (AGT) that leads to hyperoxaluria, recurrent urolithiasis, and nephrocalcinosis.Entities:
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Year: 2014 PMID: 24934730 PMCID: PMC4080780 DOI: 10.1186/1471-2369-15-92
Source DB: PubMed Journal: BMC Nephrol ISSN: 1471-2369 Impact factor: 2.388
Figure 1Radiographic findings in patient 1 (a-e) and patient 2 (f-i). Arrows indicate stones. a: abdominal X-ray, b: CT (coronal image), c: VR (volume rendering), d: MIP (maximum intensity projection), e: CT (axial image), f: ultrasound, g: VR (volume rendering), h: CT (coronal image), i: CT (axial image).
Clinical features and mutations in two patients with PH1
| 1 | Female | 3 | 10.6 | Recurrent urolithiasis | No | Multiple urolithiasis | p.S81X | Mother | Het |
| | p.S275delinsRAfs | Father | Het | ||||||
| 2 | Female | 5 | - | Recurrent urolithiasis | No | Multiple urolithiasis | p.M1T | Father | Het |
| p.I202N | Mother | Het | |||||||
-:no progression to ESRD.
Figure 2gene mutational analysis. Two mutations, p.S81X and p.Ser275delinsRAfs, in patient 1 (a). Two mutations, p.M1T and p.I202N, in patient 2 (b). PolyPhen-2 predicted the p.I202N mutation to be a “damaging mutation” with a score of 0.968 (sensitivity: 0.77; specificity: 0.95) (c). Alignment of the mutated p.I202N AGT protein with different species shows the complete conservation of the amino acid in grey (d). Arrows indicate the mutation sites. P1: patient 1, P2: patient 2, F: father, M: mother, F1: foetus.