Frontiers in Genetics (Jan 2023)

Identification of a dysfunctional exon-skipping splice variant in GLUT9/SLC2A9 causal for renal hypouricemia type 2

  • Yu Toyoda,
  • Sung Kweon Cho,
  • Sung Kweon Cho,
  • Velibor Tasic,
  • Kateřina Pavelcová,
  • Jana Bohatá,
  • Hiroshi Suzuki,
  • Victor A. David,
  • Jaeho Yoon,
  • Anna Pallaiova,
  • Jana Šaligová,
  • Darryl Nousome,
  • Raul Cachau,
  • Cheryl A. Winkler,
  • Tappei Takada,
  • Blanka Stibůrková,
  • Blanka Stibůrková,
  • Blanka Stibůrková

DOI
https://doi.org/10.3389/fgene.2022.1048330
Journal volume & issue
Vol. 13

Abstract

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Renal hypouricemia (RHUC) is a pathological condition characterized by extremely low serum urate and overexcretion of urate in the kidney; this inheritable disorder is classified into type 1 and type 2 based on causative genes encoding physiologically-important urate transporters, URAT1 and GLUT9, respectively; however, research on RHUC type 2 is still behind type 1. We herein describe a typical familial case of RHUC type 2 found in a Slovak family with severe hypouricemia and hyperuricosuria. Via clinico-genetic analyses including whole exome sequencing and in vitro functional assays, we identified an intronic GLUT9 variant, c.1419+1G>A, as the causal mutation that could lead the expression of p.Gly431GlufsTer28, a functionally-null variant resulting from exon 11 skipping. The causal relationship was also confirmed in another unrelated Macedonian family with mild hypouricemia. Accordingly, non-coding regions should be also kept in mind during genetic diagnosis for hypouricemia. Our findings provide a better pathogenic understanding of RHUC and pathophysiological importance of GLUT9.

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