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March 6, 20260 citationsOpen Access

Deep biochemical phenotyping reveals prognostic value of rare genetic variants in adult kidney stone disease.

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JMJohannes MünchJPJana PetrovskaJFJoana Figueiro-Silva

Key Points

  • This research focuses on determining the clinical significance of rare genetic variants in kidney stone disease among adults.
  • Conducted a multicenter longitudinal observational study with kidney stone formers and non-kidney stone formers.
  • Collected blood and urine samples for deep biochemical phenotyping over 3 years.
  • Correlated findings with rare genetic variants identified through whole-exome sequencing.
  • Identified that 6.8% of kidney stone formers carried rare likely pathogenic variants as strong risk factors.
  • Biochemical analyses showed heterozygous SLC34A3 variants led to significant hyperphosphaturia.
  • Monoallelic variants in SLC34A1, SLC9A3R1, or CYP24A1 did not impact biochemistry significantly.
  • Monoallelic SLC7A9 variants were found to represent intermediate risk factors requiring additional factors for stone formation.
  • Stronger risk factors correlated with increased kidney stone recurrence during the observation period.

Abstract

BACKGROUNDKidney stone disease (KSD) affects approximately 10% of the population. While genetic factors are known to play a role in KSD, determining the clinical relevance of rare variants in KSD genes identified in adults remains challenging.METHODSThe Swiss Kidney Stone Cohort is a multicenter longitudinal, observational study consisting of kidney stone formers (KSFs) (n = 701) and non-kidney stone formers (NKSFs) (n = 200). Blood and urine samples were collected at enrollment and over 3 years for deep biochemical phenotyping. Results were correlated with rare genetic variants in established KSD genes identified through whole-exome sequencing and classified according to American College of Medical Genetics and Genomics and the Association of Molecular Pathology (ACMG/AMP) criteria.RESULTSCollectively, we found rare (likely) pathogenic (LP/P) variants representing strong KSD risk factors in 6.8% of KSFs, predominantly in genes involved in renal phosphate handling and cystinuria. Detailed biochemical analyses confirmed that KSFs carrying heterozygous LP/P SLC34A3 variants exhibited significant hyperphosphaturia. In contrast, monoallelic LP/P variants in SLC34A1, SLC9A3R1, or CYP24A1, which were also frequent in NKSFs, did not result in the expected biochemical alterations, calling into question their causative role as strong KSD risk factors. In cystinuria, monoallelic SLC7A9 variants represented intermediate risk factors, since they caused biochemical alterations but required additional factors for KSD occurrence, based on frequent LP/P variants in NKSFs. The presence of strong risk factors was associated with higher kidney stone (KS) recurrence over the 3-year observation period, supporting a predictive value for genetic testing.CONCLUSIONSCorrelation of genetic findings with thorough biochemical phenotyping and comparison with NKSFs redefines the clinical relevance of variants in KSD genes and has prognostic value.

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Cite This Study

Münch et al. (2026) studied this question.

synapsesocial.com/papers/69aa70d6531e4c4a9ff5afd6https://doi.org/10.48620/95928
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