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L-2-Hydroxyglutarate production arises from noncanonical enzyme function at acidic pH.
Intlekofer, Andrew M; Wang, Bo; Liu, Hui; Shah, Hardik; Carmona-Fontaine, Carlos; Rustenburg, Ariën S; Salah, Salah; Gunner, M R; Chodera, John D; Cross, Justin R; Thompson, Craig B.
Afiliação
  • Intlekofer AM; Cancer Biology and Genetics Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Wang B; Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Liu H; Cancer Biology and Genetics Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Shah H; The Donald B. and Catherine C. Marron Cancer Metabolism Center, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Carmona-Fontaine C; The Donald B. and Catherine C. Marron Cancer Metabolism Center, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Rustenburg AS; Computational Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Salah S; Computational Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Gunner MR; Physics Department, City College of New York, New York, New York, USA.
  • Chodera JD; Physics Department, City College of New York, New York, New York, USA.
  • Cross JR; Computational Biology Program, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
  • Thompson CB; The Donald B. and Catherine C. Marron Cancer Metabolism Center, Memorial Sloan Kettering Cancer Center, New York, New York, USA.
Nat Chem Biol ; 13(5): 494-500, 2017 05.
Article em En | MEDLINE | ID: mdl-28263965
The metabolite 2-hydroxyglutarate (2HG) can be produced as either a D-R- or L-S- enantiomer, each of which inhibits α-ketoglutarate (αKG)-dependent enzymes involved in diverse biologic processes. Oncogenic mutations in isocitrate dehydrogenase (IDH) produce D-2HG, which causes a pathologic blockade in cell differentiation. On the other hand, oxygen limitation leads to accumulation of L-2HG, which can facilitate physiologic adaptation to hypoxic stress in both normal and malignant cells. Here we demonstrate that purified lactate dehydrogenase (LDH) and malate dehydrogenase (MDH) catalyze stereospecific production of L-2HG via 'promiscuous' reduction of the alternative substrate αKG. Acidic pH enhances production of L-2HG by promoting a protonated form of αKG that binds to a key residue in the substrate-binding pocket of LDHA. Acid-enhanced production of L-2HG leads to stabilization of hypoxia-inducible factor 1 alpha (HIF-1α) in normoxia. These findings offer insights into mechanisms whereby microenvironmental factors influence production of metabolites that alter cell fate and function.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Biocatálise / Glutaratos / L-Lactato Desidrogenase / Malato Desidrogenase Limite: Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Biocatálise / Glutaratos / L-Lactato Desidrogenase / Malato Desidrogenase Limite: Humans Idioma: En Ano de publicação: 2017 Tipo de documento: Article