Longitudinal Analysis of Somatic Mosaicism and Clonal Hematopoiesis in Cryopyrin-Associated Periodic Syndrome
- PMID: 40693403
- DOI: 10.1002/art.43329
Longitudinal Analysis of Somatic Mosaicism and Clonal Hematopoiesis in Cryopyrin-Associated Periodic Syndrome
Abstract
Objective: Cryopyrin-associated periodic syndrome (CAPS) is an autoinflammatory disease caused by gain-of-function mutations in NLRP3. Although somatic NLRP3 mosaicism is increasingly recognized, it remains unclear how variant allele frequency (VAF) changes over time and whether age at disease onset reflects differences in somatic mutation dynamics. This study aimed to analyze the longitudinal VAF trends and their correlation with clonal hematopoiesis (CH) in patients with CAPS mosaicism.
Methods: We analyzed NLRP3 VAF in blood and various tissues, including dried umbilical cord (DUC), using digital polymerase chain reaction and deep amplicon sequencing. Whole-exome and single-cell genome sequencing were performed to evaluate CH-related mutations.
Results: We included 15 patients with VAFs of 4.3% to 34.9%. In the 12 early-onset cases, VAFs were generally consistent across various tissues and did not increase over time, including the DUC. Conversely, in the three late-onset cases, VAFs were particularly high in myeloid cells. Notably, in one late-onset case, no mutations were detected in DUC. After disease onset, VAFs exhibited a 2.9% to 10.6% and a 6.2% to 16.4% increase in the whole blood and neutrophils over 6.4 and 4.4 years, respectively, showing a clonal expansion of NLRP3 mutant cells. Single-cell genome sequencing revealed frequent co-occurrence of NLRP3 and TET2 mutations in the same cells, with a gradual increase in both VAFs over three years in one late-onset case.
Conclusion: In early-onset cases, the VAFs were comparable across various tissues and did not increase over time. Mutations in late-onset cases were enriched in myeloid cells, and VAFs were increased, suggesting a link to CH.
© 2025 American College of Rheumatology.
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Grants and funding
- JPMH20FC1047/Health Labor Sciences Research Grant for Research on Intractable Diseases from the Ministry of Health, Labor, and Welfare of Japan
- 21ek0109478/the Practical Research Project for Rare/Intractable Diseases from the Japan Agency for Medical Research and Development (AMED)
- JP23K18264/JSPS KAKENHI
- JP24H00628/JSPS KAKENHI
- 24tk0124003h0002/AMED Program for Promoting Platform of Genomics based Drug Discovery
- 22H03041/MEXT/JSPS KAKENHI
- 22KK0113/MEXT/JSPS KAKENHI
- JP23ek0109623/Japan Agency for Medical Research and Development
- JP24ek019754/Japan Agency for Medical Research and Development
- 24H00009/JSPS Grant-in-Aid for Specially Promoted Research
- 24ama221530h0001/AMED Project for Promotion of Cancer Research and Therapeutic Evolution (Field E)
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