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Mutations in Glucose Transporter 9 Gene SLC2A9 Cause Renal Hypouricemia

  • Hirotaka Matsuo
  • , Toshinori Chiba
  • , Shushi Nagamori
  • , Akiyoshi Nakayama
  • , Hideharu Domoto
  • , Kanokporn Phetdee
  • , Pattama Wiriyasermkul
  • , Yuichi Kikuchi
  • , Takashi Oda
  • , Junichiro Nishiyama
  • , Takahiro Nakamura
  • , Yuji Morimoto
  • , Keiko Kamakura
  • , Yutaka Sakurai
  • , Shigeaki Nonoyama
  • , Yoshikatsu Kanai
  • , Nariyoshi Shinomiya

研究成果: ジャーナルへの寄稿学術論文査読

抄録

Renal hypouricemia is an inherited disorder characterized by impaired renal urate (uric acid) reabsorption and subsequent low serum urate levels, with severe complications such as exercise-induced acute renal failure and nephrolithiasis. We previously identified SLC22A12, also known as URAT1, as a causative gene of renal hypouricemia. However, hypouricemic patients without URAT1 mutations, as well as genome-wide association studies between urate and SLC2A9 (also called GLUT9), imply that GLUT9 could be another causative gene of renal hypouricemia. With a large human database, we identified two loss-of-function heterozygous mutations in GLUT9, which occur in the highly conserved "sugar transport proteins signatures 1/2." Both mutations result in loss of positive charges, one of which is reported to be an important membrane topology determinant. The oocyte expression study revealed that both GLUT9 isoforms showed high urate transport activities, whereas the mutated GLUT9 isoforms markedly reduced them. Our findings, together with previous reports on GLUT9 localization, suggest that these GLUT9 mutations cause renal hypouricemia by their decreased urate reabsorption on both sides of the renal proximal tubules. These findings also enable us to propose a physiological model of the renal urate reabsorption in which GLUT9 regulates serum urate levels in humans and can be a promising therapeutic target for gout and related cardiovascular diseases.

本文言語英語
ページ(範囲)744-751
ページ数8
ジャーナルAmerican Journal of Human Genetics
83
6
DOI
出版ステータス出版済み - 12-12-2008
外部発表はい

UN SDG

この成果は、次の持続可能な開発目標に貢献しています

  1. SDG 3 - すべての人に健康と福祉を
    SDG 3 すべての人に健康と福祉を

All Science Journal Classification (ASJC) codes

  • 遺伝学
  • 遺伝学(臨床)

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