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Results for “SLC22A12”

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Genotype-Informed Characterization of Mild Renal Hypouricemia.

INTRODUCTION: Renal hypouricemia is caused by pathogenic variants in SLC22A12 and SLC2A9. Current diagnostic thresholds based on serum uric acid (UA) (SUA < 2 mg/dl) and fractional excretion of UA (FEUA > 10%) may overlook individuals with monoallelic variants and mild hypouricemia, whose clinical implications remain incompletely defined. This study evaluated genotype-phenotype correlations across individuals with 0, 1, or 2 pathogenic alleles in a referral-based genetic testing cohort from Galicia (Western Europe). METHODS: We analyzed probands referred for suspected renal hypouricemia, their relatives, and additional carriers not previously suspected of the condition. Genetic, biochemical, and clinical data were integrated to characterize SUA and FEUA distributions by genotype and to identify overlooked cases. RESULTS: Among 21 probands, 15 carried pathogenic or likely pathogenic variants (71% diagnostic yield), including 3 variants not previously linked to renal hypouricemia. Monoallelic carriers frequently showed mild hypouricemia (SUA: 2-3.3 mg/dl), whereas biallelic carriers had SUA < 2 mg/dl. SUA and FEUA showed an allele-dose pattern, although FEUA availability was limited. Additional carriers identified outside renal hypouricemia suspicion had compatible biochemical profiles when data were available, suggesting underrecognition in clinical practice. CONCLUSION: In this referral-based cohort, monoallelic pathogenic or likely pathogenic variants in SLC22A12 and SLC2A9 were frequently associated with mild hypouricemia, supporting FEUA assessment and follow-up when low SUA is persistent or clinically suggestive. Current diagnostic thresholds may miss some of these individuals, supporting genotype-informed refinement of serum urate criteria to improve detection and monitoring.

SLC22A12↗

Novel Genetic Loci in Early-Onset Gout Derived From Whole-Genome Sequencing of an Adolescent Gout Cohort.

OBJECTIVE: Mechanisms underlying the adolescent-onset and early-onset gout are unclear. This study aimed to discover variants associated with early-onset gout. METHODS: We conducted whole-genome sequencing in a discovery adolescent-onset gout cohort of 905 individuals (gout onset 12 to 19 years) to discover common and low-frequency single-nucleotide variants (SNVs) associated with gout. Candidate common SNVs were genotyped in an early-onset gout cohort of 2,834 individuals (gout onset &#x2264;30 years old), and meta-analysis was performed with the discovery and replication cohorts to identify loci associated with early-onset gout. Transcriptome and epigenomic analyses, quantitative real-time polymerase chain reaction and RNA sequencing in human peripheral blood leukocytes, and knock-down experiments in human THP-1 macrophage cells investigated the regulation and function of candidate gene RCOR1. RESULTS: In addition to ABCG2, a urate transporter previously linked to pediatric-onset and early-onset gout, we identified two novel loci (Pmeta < 5.0 &#xd7; 10-8): rs12887440 (RCOR1) and rs35213808 (FSTL5-MIR4454). Additionally, we found associations at ABCG2 and SLC22A12 that were driven by low-frequency SNVs. SNVs in RCOR1 were linked to elevated blood leukocyte messenger RNA levels. THP-1 macrophage culture studies revealed the potential of decreased RCOR1 to suppress gouty inflammation. CONCLUSION: This is the first comprehensive genetic characterization of adolescent-onset gout. The identified risk loci of early-onset gout mediate inflammatory responsiveness to crystals that could mediate gouty arthritis. This study will contribute to risk prediction and therapeutic interventions to prevent adolescent-onset gout.

Humans↗