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Erschienen in: Journal of Nephrology 3/2015

01.06.2015 | Case Report

A novel homozygous GLUT9 mutation cause recurrent exercise-induced acute renal failure and posterior reversible encephalopathy syndrome

verfasst von: Li-jun Mou, Lan-ping Jiang, Ying Hu

Erschienen in: Journal of Nephrology | Ausgabe 3/2015

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Abstract

Renal hypouricemia (RHU) is an autosomal recessive hereditary disease characterized by impaired renal urate reabsorption and subsequent profound hypouricemia. There are two types of RHU, type 1 and type 2, caused by the loss-of-function mutation of SLC22A12 and SLC2A9 genes, respectively. RHU predisposes affected people to exercise-induced acute renal failure (EIARF), posterior reversible encephalopathy syndrome (PRES) and nephrolithiasis. A Chinese patient had experienced three episodes of EIARF and one episode of PRES. The investigations showed profound hypouricemia and significantly increased renal excretion of UA. Cranial magnetic resonance imaging showed communicating hydrocephalus. Renal biopsy displayed interlobular artery intimal thickening with reduction of lumen and acute tubulointerstitial injury. The mutational analysis revealed a homozygous splice-site mutation in the SLC2A9 gene encoding glucose transporter 9. The patient was diagnosed as RHU type 2 caused by a loss-of-function mutation of the SLC2A9 gene. Consequently, he was strictly prohibited from strenuous exercise. During the 5-year follow-up, EIARF and PRES never recurred. Strenuous exercise may induce systemic (including renal and cerebrovascular) vasoconstriction eventually resulting in EIARF and PRES in patients with RHU. To our knowledge, this is the first report of a homozygous splice-site mutation in the SLC2A9 gene, renal arteriolar chronic lesion, concurrence of RHU and communicating hydrocephalus.
Literatur
2.
Zurück zum Zitat Dinour D, Gray NK, Ganon L et al (2012) Two novel homozygous SLC2A9 mutations cause renal hypouricemia type 2. Nephrol Dial Transpl 27(3):1035–1041CrossRef Dinour D, Gray NK, Ganon L et al (2012) Two novel homozygous SLC2A9 mutations cause renal hypouricemia type 2. Nephrol Dial Transpl 27(3):1035–1041CrossRef
3.
Zurück zum Zitat Shima Y, Nozu K, Nozu Y et al (2011) Recurrent EIARF and PRES with severe renal hypouricemia by compound heterozygous SLC2A9 mutation. Pediatrics 127(6):e1621–e1625CrossRefPubMed Shima Y, Nozu K, Nozu Y et al (2011) Recurrent EIARF and PRES with severe renal hypouricemia by compound heterozygous SLC2A9 mutation. Pediatrics 127(6):e1621–e1625CrossRefPubMed
4.
Zurück zum Zitat Anzai N, Ichida K, Jutabha P et al (2008) Plasma urate level is directly regulated by a voltage-driven urate efflux transporter URAT1 (SLC2A9) in humans. J Biol Chem 283(40):26834–26838CrossRefPubMed Anzai N, Ichida K, Jutabha P et al (2008) Plasma urate level is directly regulated by a voltage-driven urate efflux transporter URAT1 (SLC2A9) in humans. J Biol Chem 283(40):26834–26838CrossRefPubMed
5.
Zurück zum Zitat Matsuo H, Chiba T, Nagamori S et al (2008) Mutations in glucose transporter 9 gene SLC2A9 cause renal hypouricemia. Am J Hum Genet 83(6):744–751CrossRefPubMedCentralPubMed Matsuo H, Chiba T, Nagamori S et al (2008) Mutations in glucose transporter 9 gene SLC2A9 cause renal hypouricemia. Am J Hum Genet 83(6):744–751CrossRefPubMedCentralPubMed
7.
Zurück zum Zitat Li Z, Ding H, Chen C et al (2013) Novel URAT1 mutations caused acute renal failure after exercise in two Chinese families with renal hypouricemia. Gene 512(1):97–101CrossRefPubMed Li Z, Ding H, Chen C et al (2013) Novel URAT1 mutations caused acute renal failure after exercise in two Chinese families with renal hypouricemia. Gene 512(1):97–101CrossRefPubMed
10.
Zurück zum Zitat Kaneko K, Taniguchi N, Tanabe Y et al (2009) Oxidative imbalance in idiopathic renal hypouricemia. Pediatr Nephrol 24(4):869–871CrossRefPubMed Kaneko K, Taniguchi N, Tanabe Y et al (2009) Oxidative imbalance in idiopathic renal hypouricemia. Pediatr Nephrol 24(4):869–871CrossRefPubMed
11.
Zurück zum Zitat Ishikawa I, Nakagawa M, Hayama S et al (2005) Acute renal failure with severe loin pain and patchy renal ischaemia after anaerobic exercise (ALPE) (exercise-induced acute renal failure) in a father and child with URAT1 mutations beyond the W258X mutation. Nephrol Dial Transpl 20(5):1015CrossRef Ishikawa I, Nakagawa M, Hayama S et al (2005) Acute renal failure with severe loin pain and patchy renal ischaemia after anaerobic exercise (ALPE) (exercise-induced acute renal failure) in a father and child with URAT1 mutations beyond the W258X mutation. Nephrol Dial Transpl 20(5):1015CrossRef
12.
Zurück zum Zitat Ishikawa I (2002) Acute renal failure with severe loin pain and patchy renal ischemia after anaerobic exercise in patients with or without renal hypouricemia. Nephron 91(4):559–570CrossRefPubMed Ishikawa I (2002) Acute renal failure with severe loin pain and patchy renal ischemia after anaerobic exercise in patients with or without renal hypouricemia. Nephron 91(4):559–570CrossRefPubMed
13.
Zurück zum Zitat Nishida H, Kaida H, Ishibashi M et al (2005) Evaluation of exercise-induced acute renal failure in renal hypouricemia using Tc-99m DTPA renography. Ann Nucl Med 19(4):325–329CrossRefPubMed Nishida H, Kaida H, Ishibashi M et al (2005) Evaluation of exercise-induced acute renal failure in renal hypouricemia using Tc-99m DTPA renography. Ann Nucl Med 19(4):325–329CrossRefPubMed
14.
Zurück zum Zitat Fujinaga S, Ito A, Nakagawa M et al (2013) Posterior reversible encephalopathy syndrome with exercise-induced acute kidney injury in renal hypouricemia type 1. Eur J Pediatr 172(11):1557–1560CrossRefPubMed Fujinaga S, Ito A, Nakagawa M et al (2013) Posterior reversible encephalopathy syndrome with exercise-induced acute kidney injury in renal hypouricemia type 1. Eur J Pediatr 172(11):1557–1560CrossRefPubMed
15.
Zurück zum Zitat Ueda O, Oka T, Kyan H (1997) A case of renal hypouricemia with exercise-induced acute renal failure and cerebral infarction. J Jpn Pediatr Soc 101(5):1620–1625 Ueda O, Oka T, Kyan H (1997) A case of renal hypouricemia with exercise-induced acute renal failure and cerebral infarction. J Jpn Pediatr Soc 101(5):1620–1625
16.
Zurück zum Zitat Watanabe T, Abe T, Oda Y (2000) Exercise-induced acute renal failure in a patient with renal hypouricemia. Pediatr Nephrol 14(8–9):851–852CrossRefPubMed Watanabe T, Abe T, Oda Y (2000) Exercise-induced acute renal failure in a patient with renal hypouricemia. Pediatr Nephrol 14(8–9):851–852CrossRefPubMed
Metadaten
Titel
A novel homozygous GLUT9 mutation cause recurrent exercise-induced acute renal failure and posterior reversible encephalopathy syndrome
verfasst von
Li-jun Mou
Lan-ping Jiang
Ying Hu
Publikationsdatum
01.06.2015
Verlag
Springer International Publishing
Erschienen in
Journal of Nephrology / Ausgabe 3/2015
Print ISSN: 1121-8428
Elektronische ISSN: 1724-6059
DOI
https://doi.org/10.1007/s40620-014-0073-0

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