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Updated: Sep 13, 2026

Comparative Lesions Analysis Through a Targeted Sequencing Approach
Published on: November 5, 2019
Genetic and genetic expression analyses of clear cell sarcoma of the kidney
Amy E Schuster1, Dominik T Schneider, Michael K Fritsch
1The University of Maryland School of Medicine, Baltimore, Maryland, USA.
Abstract:
Clear cell sarcoma of the kidney (CCSK) represents a significant diagnostic and clinical challenge. In search of diagnostically useful or biologically significant genetic abnormalities, we screened 30 CCSKs from the National Wilms Tumor Study Group. Genetic gains and losses were analyzed using comparative genomic hybridization; loss of heterozygosity at 11p15 was studied using microsatellite analysis. Loss of imprinting (LOI) was studied using allele-specific expression or methylation analysis at the ApaI polymorphic site for IGF2, AluI and RsaI sites for H19, and Cfo I site for SNRPN. Comparative genomic hybridization analysis revealed quantitative abnormalities in only 4 of 30 CCSKs. Two showed gain of 1q, one also showed loss of 10q, and the other also showed loss of terminal 4p. The other two cases demonstrated chromosome 19 loss and chromosome 19p gain, respectively. All 22 cases informative for 11p15 showed retention of both alleles. Of 14 CCSKs informative for IGF2, six showed biallelic expression; all three CCSKs informative for H19 exhibited monoallelic expression. The normal imprint pattern was present in all six CCSKs analyzed for SNRPN methylation. These data demonstrate an absence of consistent genetic gains or losses in CCSKs using these methods. The high frequency of LOI for IGF2 in CCSKs (43%) is comparable to that reported in Wilms tumors. The retention of imprinting at the SNRPN and H19 loci confirm that LOI is not a ubiquitous epigenetic change. This suggests that IGF2, a potent growth factor, may play a role in the development or progression of CCSK.
Insights
Clear cell sarcoma of the kidney (CCSK) shows few genetic abnormalities. However, a high frequency of insulin-like growth factor 2 (IGF2) loss of imprinting suggests its role in CCSK development.
Area of Science:
- Oncology
- Genetics
- Epigenetics
Background:
- Clear cell sarcoma of the kidney (CCSK) presents diagnostic and clinical challenges.
- Identifying genetic abnormalities in CCSK is crucial for understanding its biology.
Purpose of the Study:
- To investigate genetic gains, losses, and imprinting status in CCSK.
- To identify potential diagnostic markers or biologically significant genetic alterations.
Main Methods:
- Comparative genomic hybridization (CGH) for genetic gains and losses.
- Microsatellite analysis for 11p15 loss of heterozygosity.
- Imprinting analysis (IGF2, H19, SNRPN) using expression and methylation assays.
Main Results:
- CGH revealed abnormalities in only 4 of 30 CCSKs (e.g., 1q gain, 10q loss, 4p loss, chromosome 19 alterations).
- No consistent loss of heterozygosity at 11p15 was observed.
- 43% of informative CCSKs showed loss of imprinting (LOI) for IGF2, while H19 and SNRPN maintained normal imprinting.
Conclusions:
- CCSK lacks consistent chromosomal gains or losses.
- The high frequency of IGF2 loss of imprinting suggests its potential role in CCSK pathogenesis.
- IGF2 may be a key factor in the development or progression of clear cell sarcoma of the kidney.
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