TY - JOUR
T1 - Succinate dehydrogenase mutation underlies global epigenomic divergence in gastrointestinal stromal tumor
AU - Killian, J. Keith
AU - Kim, Su Young
AU - Miettinen, Markku
AU - Smith, Carly
AU - Merino, Maria
AU - Tsokos, Maria
AU - Quezado, Martha
AU - Smith, William I.
AU - Jahromi, Mona S.
AU - Xekouki, Paraskevi
AU - Szarek, Eva
AU - Walker, Robert L.
AU - Lasota, Jerzy
AU - Raffeld, Mark
AU - Klotzle, Brandy
AU - Wang, Zengfeng
AU - Jones, Laura
AU - Zhu, Yuelin
AU - Wang, Yonghong
AU - Waterfall, Joshua J.
AU - O'Sullivan, Maureen J.
AU - Bibikova, Marina
AU - Pacak, Karel
AU - Stratakis, Constantine
AU - Janeway, Katherine A.
AU - Schiffman, Joshua D.
AU - Fan, Jian Bing
AU - Helman, Lee
AU - Meltzer, Paul S.
PY - 2013
Y1 - 2013
N2 - Gastrointestinal stromal tumors (GIST) harbor driver mutations of signal transduction kinases such as KIT, or, alternatively, manifest loss-of-function defects in the mitochondrial succinate dehydrogenase (SDH) complex, a component of the Krebs cycle and electron transport chain. We have uncovered a striking divergence between the DNA methylation profiles of SDH-deficient GIST (n = 24) versus KIT tyrosine kinase pathway-mutated GIST (n = 39). Infinium 450K methylation array analysis of formalin-fixed paraffin-embedded tissues disclosed an order of magnitude greater genomic hypermethylation relative to SDH-deficient GIST versus the KIT-mutant group (84.9 K vs. 8.4 K targets). Epigenomic divergence was further found among SDH-mutant paraganglioma/pheochromocytoma (n = 29), a developmentally distinct SDH-deficient tumor system. Comparison of SDH-mutant GIST with isocitrate dehydrogenase-mutant glioma, another Krebs cycle-defective tumor type, revealed comparable measures of global hypoand hypermethylation. These data expose a vital connection between succinate metabolism and genomic DNA methylation during tumorigenesis, and generally implicate the mitochondrial Krebs cycle in nuclear epigenomic maintenance. SIGNIFICANCE: This study shows that SDH deficiency underlies pervasive DNA hypermethylation in multiple tumor lineages, generally defining the Krebs cycle as mitochondrial custodian of the methylome. We propose that this phenomenon may result from a failure of maintenance CpG demethylation, secondary to inhibition of the TET 5-methylcytosine dioxgenase demethylation pathway, by inhibitory metabolites that accumulate in tumors with Krebs cycle dysfunction.
AB - Gastrointestinal stromal tumors (GIST) harbor driver mutations of signal transduction kinases such as KIT, or, alternatively, manifest loss-of-function defects in the mitochondrial succinate dehydrogenase (SDH) complex, a component of the Krebs cycle and electron transport chain. We have uncovered a striking divergence between the DNA methylation profiles of SDH-deficient GIST (n = 24) versus KIT tyrosine kinase pathway-mutated GIST (n = 39). Infinium 450K methylation array analysis of formalin-fixed paraffin-embedded tissues disclosed an order of magnitude greater genomic hypermethylation relative to SDH-deficient GIST versus the KIT-mutant group (84.9 K vs. 8.4 K targets). Epigenomic divergence was further found among SDH-mutant paraganglioma/pheochromocytoma (n = 29), a developmentally distinct SDH-deficient tumor system. Comparison of SDH-mutant GIST with isocitrate dehydrogenase-mutant glioma, another Krebs cycle-defective tumor type, revealed comparable measures of global hypoand hypermethylation. These data expose a vital connection between succinate metabolism and genomic DNA methylation during tumorigenesis, and generally implicate the mitochondrial Krebs cycle in nuclear epigenomic maintenance. SIGNIFICANCE: This study shows that SDH deficiency underlies pervasive DNA hypermethylation in multiple tumor lineages, generally defining the Krebs cycle as mitochondrial custodian of the methylome. We propose that this phenomenon may result from a failure of maintenance CpG demethylation, secondary to inhibition of the TET 5-methylcytosine dioxgenase demethylation pathway, by inhibitory metabolites that accumulate in tumors with Krebs cycle dysfunction.
UR - https://www.scopus.com/pages/publications/84878152241
UR - https://www.scopus.com/pages/publications/84878152241#tab=citedBy
U2 - 10.1158/2159-8290.CD-13-0092
DO - 10.1158/2159-8290.CD-13-0092
M3 - Article
C2 - 23550148
AN - SCOPUS:84878152241
SN - 2159-8274
VL - 3
SP - 648
EP - 657
JO - Cancer discovery
JF - Cancer discovery
IS - 6
ER -