Molecular Genetics and Metabolism Reports (Mar 2017)

Utility of the succinate:fumarate ratio for assessing SDH dysfunction in different tumor types

  • Edward Kim,
  • Michael JP. Wright,
  • Loretta Sioson,
  • Talia Novos,
  • Anthony J. Gill,
  • Diana E. Benn,
  • Christopher White,
  • Trisha Dwight,
  • Roderick J. Clifton-Bligh

DOI
https://doi.org/10.1016/j.ymgmr.2016.12.006
Journal volume & issue
Vol. 10, no. C
pp. 45 – 49

Abstract

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Objective: Mutations of genes encoding the four subunits of succinate dehydrogenase (SDH) have been associated with pheochromocytoma and paraganglioma (PPGLs), gastrointestinal stromal tumors (GISTs) and renal cell carcinomas (RCCs). These tumors have not been characterized in a way that reflects severity of SDH dysfunction. Mass spectrometric analysis now allows measurement of metabolites extracted from formalin fixed paraffin embedded (FFPE) specimens. We assess whether SDH deficiency in various tumor types characterized by loss of SDHB protein expression correlates with SDH dysfunction as assessed by the ratio of succinate:fumarate in FFPE specimens. Patients and methods: Sections of FFPE tumor specimens from 18 PPGL, 10 GIST and 11 RCC patients with known SDHx mutation status for SDH deficiency were collected for mass spectrometric analysis of succinate and fumarate. Results: FFPE samples showed higher succinate:fumarate ratios in SDH-deficient PPGLs compared to SDH-sufficient PPGLs. Similarly, a higher succinate:fumarate ratio was able to distinguish SDH-deficient GISTs and RCCs from their SDH-sufficient counterparts with great selectivity. Interestingly, the cut-off value of the succinate:fumarate ratio was two-folds greater in RCCs than GISTs. Conclusion: Analyzing biochemical imbalances preserved in FFPE specimens with mass spectrometry expands the method and sample type repertoire available for characterisation of multiple neoplasias associated with SDH deficiency.

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