Identification of GLUT12/SLC2A12 as a urate transporter that regulates the blood urate level in hyperuricemia model mice.
basic_science · Level V
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- Record sourced from PubMed, PMID 32690690.
- Also identified by DOI 10.1073/pnas.2006958117 and PMC identifier 7414087.
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Abstract
Recent genome-wide association studies have revealed some genetic loci associated with serum uric acid levels and susceptibility to gout/hyperuricemia which contain potential candidates of physiologically important urate transporters. One of these novel loci is located upstream of <i>SGK1</i> and <i>SLC2A12</i>, suggesting that variations in these genes increase the risks of hyperuricemia and gout. We herein focused on <i>SLC2A12</i> encoding a transporter, GLUT12, the physiological function of which remains unclear. As GLUT12 belongs to the same protein family as a well-recognized urate transporter GLUT9, we hypothesized that GLUT12 mediates membrane transport of urate. Therefore, we conducted functional assays and analyzed <i>Glut12</i> knockout hyperuricemia model mice, generated using the CRISPR-Cas9 system. Our results revealed that GLUT12 acts as a physiological urate transporter and its dysfunction elevates the blood urate concentration. This study provides insights into the deeper understanding of the urate regulatory system in the body, which is also important for pathophysiology of gout/hyperuricemia.
Medical subject headings
- Glucose Transport Proteins, Facilitative
- Hyperuricemia
- Uric Acid