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Updated: Feb 19, 2026

Genome-Wide Analysis of DNA Methylation in Gastrointestinal Cancer
Published on: September 18, 2020
SDHC Promoter Methylation, a Novel Pathogenic Mechanism in Parasympathetic Paragangliomas
Cristóbal Bernardo-Castiñeira1, Nuria Valdés2, Marta I Sierra3
1Head and Neck Oncology Laboratory, Institute of Sanitary Research of Asturias (ISPA), Hospital Universitario Central de Asturias, Institute of Oncology of Asturias (IUOPA), CIBERONC, Oviedo, Spain.
Context:
Germline mutations in the succinate dehydrogenase A, B, C, and D genes (collectively, SDHx) predispose to the development of paragangliomas (PGLs) arising at the parasympathetic or sympathetic neuroendocrine systems. SDHx mutations cause absence of tumoral immunostaining for SDHB. However, negative SDHB immunostaining has also been found in a subset of PGLs that lack SDHx mutations.
Settings:
Here, we report the comprehensive molecular characterization of one such a tumor of parasympathetic origin compared with healthy paraganglia and other PGLs with or without SDHx mutations.
Results:
Integration of multiplatform data revealed somatic SDHC methylation and loss of the 1q23.3 region containing the SDHC gene. This correlated with decreased SDHC messenger RNA (mRNA) and protein levels. Furthermore, another genetic event found affected the VHL gene, which showed a decreased DNA copy number, associated with low VHL mRNA levels, and an absence of VHL protein detected by immunohistochemistry. In addition, the tumor displayed a pseudohypoxic phenotype consisting in overexpression of the hypoxia-inducible factor (HIF)-1α and miR-210, as well as downregulation of the iron-sulfur cluster assembly enzyme (ISCU) involved in SDHB maturation. This profile resembles that of SDHx- or VHL-mutated PGLs but not of PGLs with decreased VHL copy number, pointing to SDHC rather than VHL as the pathogenic driver.
Conclusions:
Collectively, these findings demonstrate the potential importance of both the SDHC epigenomic event and the activation of the HIF-1α/miR-210/ISCU axis in the pathogenesis of SDHx wild-type/SDHB-negative PGLs. To our knowledge, this is the first case of a sporadic parasympathetic PGL that carries silencing of SDHC, fulfilling the two-hit Knudson's model for tumorigenesis.
Insights
This study identifies SDHC gene silencing as a key driver in a specific type of paraganglioma. This finding advances understanding of SDHB-negative tumors and the pseudohypoxic pathway in tumorigenesis.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Germline mutations in SDHx genes are linked to paragangliomas (PGLs).
- Negative SDHB immunostaining occurs in PGLs with and without SDHx mutations.
- Understanding SDHB-negative PGLs is crucial for diagnosis and treatment.
Purpose of the Study:
- To perform comprehensive molecular characterization of an SDHB-negative, SDHx wild-type parasympathetic PGL.
- To identify the genetic and epigenetic drivers of this specific PGL subtype.
- To elucidate the role of the pseudohypoxic pathway in its pathogenesis.
Main Methods:
- Multiplatform data integration including genetic and epigenetic analyses.
- Analysis of gene expression (mRNA) and protein levels.
- Immunohistochemistry for protein detection.
- Assessment of hypoxia-inducible factor (HIF) and related pathways.
Main Results:
- Somatic SDHC methylation and 1q23.3 region loss led to decreased SDHC mRNA and protein.
- The VHL gene showed decreased copy number and low mRNA/protein levels.
- A pseudohypoxic phenotype was observed with HIF-1α and miR-210 overexpression and ISCU downregulation.
- The molecular profile implicated SDHC silencing as the primary pathogenic event.
Conclusions:
- SDHC epigenomic event and HIF-1α/miR-210/ISCU axis activation are important in SDHx wild-type/SDHB-negative PGLs.
- This is the first reported case of sporadic parasympathetic PGL with SDHC silencing, fitting Knudson's two-hit model.
- Findings highlight SDHC as a potential pathogenic driver in this PGL subset.
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