Inhibition of the succinyl dehydrogenase complex in acute myeloid leukemia leads to a lactate-fuelled respiratory metabolic vulnerability

dc.contributor.author
Huls, Gerwin
dc.contributor.author
Cascante i Serratosa, Marta
dc.contributor.author
Schuringa, Jan Jacob
dc.contributor.author
Erdem, Aysegül
dc.contributor.author
Marín Martínez, Silvia
dc.contributor.author
Pereira-Martins, Diego A.
dc.contributor.author
Geugien, Marjan
dc.contributor.author
Cunningham, Alan
dc.contributor.author
Pruis, Maurien G.
dc.contributor.author
Weinhäuser, Isabel
dc.contributor.author
Gerding, Albert
dc.contributor.author
Bakker, Barbara M.
dc.contributor.author
Wierenga, Albertus
dc.contributor.author
Rego, Eduardo
dc.date.accessioned
2026-02-19T19:59:35Z
dc.date.available
2026-02-19T19:59:35Z
dc.date.issued
2026-02-16T09:48:56Z
dc.date.issued
2026-02-16T09:48:56Z
dc.date.issued
2022-04-19
dc.date.issued
2026-02-16T09:48:56Z
dc.identifier
2041-1723
dc.identifier
https://hdl.handle.net/2445/226882
dc.identifier
723147
dc.identifier.uri
https://hdl.handle.net/2445/226882
dc.description.abstract
Metabolic programs can differ substantially across genetically distinct subtypes of acute myeloid leukemia (AML). These programs are not static entities but can change swiftly as a consequence of extracellular changes or in response to pathway-inhibiting drugs. Here, we uncover that AML patients with FLT3 internal tandem duplications (FLT3-ITD+) are characterized by a high expression of succinate-CoA ligases and high activity of mitochondrial electron transport chain (ETC) complex II, thereby driving high mitochondrial respiration activity linked to the Krebs cycle. While inhibition of ETC complex II enhances apoptosis in FLT3-ITD+ AML, cells also quickly adapt by importing lactate from the extracellular microenvironment. 13C3-labelled lactate metabolic flux analyses reveal that AML cells use lactate as a fuel for mitochondrial respiration. Inhibition of lactate transport by blocking Monocarboxylic Acid Transporter 1 (MCT1) strongly enhances sensitivity to ETC complex II inhibition in vitro as well as in vivo. Our study highlights a metabolic adaptability of cancer cells that can be exploited therapeutically.
dc.format
15 p.
dc.format
application/pdf
dc.language
eng
dc.publisher
Nature Publishing Group
dc.relation
Reproducció del document publicat a: https://doi.org/10.1038/s41467-022-29639-0
dc.relation
Nature Communications, 2022, vol. 13, num.1
dc.relation
https://doi.org/10.1038/s41467-022-29639-0
dc.rights
cc-by (c) Erdem, A. et al., 2022
dc.rights
http://creativecommons.org/licenses/by/4.0/
dc.rights
info:eu-repo/semantics/openAccess
dc.subject
Leucèmia mieloide
dc.subject
Aparell respiratori
dc.subject
Metabolisme
dc.subject
Myeloid leukemia
dc.subject
Respiratory organs
dc.subject
Metabolism
dc.title
Inhibition of the succinyl dehydrogenase complex in acute myeloid leukemia leads to a lactate-fuelled respiratory metabolic vulnerability
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion


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