4.8 Article

NADP+-IDH Mutations Promote Hypersuccinylation that Impairs Mitochondria Respiration and Induces Apoptosis Resistance

Journal

MOLECULAR CELL
Volume 60, Issue 4, Pages 661-675

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2015.10.017

Keywords

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Funding

  1. State Key Development Programs (973) of Basic Research of China [2012CB910103, 2013CB531200, 2013CB945401, 2013CB911204, 2015CB943300, 2015AA020913]
  2. National Science Foundation of China [31330023, 81301717, 81471454]
  3. International Cooperative grant from Minister of Science and Technology [2014DFA30630]
  4. Science and Technology Municipal Commission of Shanghai [12ZR1440800, 12ZR1440800 and 14ZR1402000]

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Elucidating the tumorigenic mechanism of R-2-hydroxyglutarate (R-2HG) is critical for determining how NADP(+)-IDH mutations cause cancer. Here we report that R-2HG induces cancerous metabolism and apoptosis resistance through promoting hypersuccinylation. By competitive inhibition of the mitochondrial tricarboxylic acid cycle enzyme succinate dehydrogenase (SDH), R-2HG preferentially induced succinyl-CoA accumulation and hypersuccinylation in the mitochondria. IDH1 mutation-bearing glioma samples and cells were hypersuccinylated in the mitochondria. IDH1 mutation or SDH inactivation resulted in hypersuccinylation, causing respiration inhibition and inducing cancerous metabolism and mitochondrial depolarization. These mitochondrial dysfunctions induced BCL-2 accumulation at the mitochondrial membrane, leading to apoptosis resistance of hypersuccinylated cells. Relief of hypersuccinylation by overexpressing the desuccinylase SIRT5 or supplementing glycine rescued mitochondrial dysfunctions, reversed BCL-2 accumulation, and slowed the oncogenic growth of hypersuccinylated IDH1 (R132C)-harboring HT1080 cells. Thus, R-2HG-induced hypersuccinylation contributes to the tumorigenicity of NADP(+)-IDH mutations, suggesting the potential of hypersuccinylation inhibition as an intervention for hypersuccinylation- related tumors.

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