[PDF][PDF] Renal cyst formation in Fh1-deficient mice is independent of the Hif/Phd pathway: roles for fumarate in KEAP1 succination and Nrf2 signaling

J Adam, E Hatipoglu, L O'Flaherty, N Ternette… - Cancer cell, 2011 - cell.com
J Adam, E Hatipoglu, L O'Flaherty, N Ternette, N Sahgal, H Lockstone, D Baban, E Nye…
Cancer cell, 2011cell.com
The Krebs cycle enzyme fumarate hydratase (FH) is a human tumor suppressor whose
inactivation is associated with the development of leiomyomata, renal cysts, and tumors. It
has been proposed that activation of hypoxia inducible factor (HIF) by fumarate-mediated
inhibition of HIF prolyl hydroxylases drives oncogenesis. Using a mouse model, we provide
genetic evidence that Fh1-associated cyst formation is Hif independent, as is striking
upregulation of antioxidant signaling pathways revealed by gene expression profiling …
Summary
The Krebs cycle enzyme fumarate hydratase (FH) is a human tumor suppressor whose inactivation is associated with the development of leiomyomata, renal cysts, and tumors. It has been proposed that activation of hypoxia inducible factor (HIF) by fumarate-mediated inhibition of HIF prolyl hydroxylases drives oncogenesis. Using a mouse model, we provide genetic evidence that Fh1-associated cyst formation is Hif independent, as is striking upregulation of antioxidant signaling pathways revealed by gene expression profiling. Mechanistic analysis revealed that fumarate modifies cysteine residues within the Kelch-like ECH-associated protein 1 (KEAP1), abrogating its ability to repress the Nuclear factor (erythroid-derived 2)-like 2 (Nrf2)-mediated antioxidant response pathway, suggesting a role for Nrf2 dysregulation in FH-associated cysts and tumors.
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