Publication:
HIF-driven SF3B1 induces KHK-C to enforce fructolysis and heart disease

dc.bibliographiccitation.firstpage444
dc.bibliographiccitation.issue7557
dc.bibliographiccitation.journalNature
dc.bibliographiccitation.lastpage+
dc.bibliographiccitation.volume522
dc.contributor.authorMirtschink, Peter
dc.contributor.authorKrishnan, Jaya
dc.contributor.authorGrimm, Fiona
dc.contributor.authorSarre, Alexandre
dc.contributor.authorHoerl, Manuel
dc.contributor.authorKayikci, Melis
dc.contributor.authorFankhauser, Niklaus
dc.contributor.authorChristinat, Yann
dc.contributor.authorCortijo, Cedric
dc.contributor.authorFeehan, Owen
dc.contributor.authorVukolic, Ana
dc.contributor.authorSossalla, Samuel T.
dc.contributor.authorStehr, Sebastian N.
dc.contributor.authorUle, Jernej
dc.contributor.authorZamboni, Nicola
dc.contributor.authorPedrazzini, Thierry
dc.contributor.authorKrek, Wilhelm
dc.date.accessioned2018-11-07T09:55:41Z
dc.date.available2018-11-07T09:55:41Z
dc.date.issued2015
dc.description.abstractFructose is a major component of dietary sugar and its overconsumption exacerbates key pathological features of metabolic syndrome. The central fructose-metabolising enzyme is ketohexokinase (KHK), which exists in two isoforms: KHK-A and KHK-C, generated through mutually exclusive alternative splicing of KHK pre-mRNAs. KHK-C displays superior affinity for fructose compared with KHK-A and is produced primarily in the liver, thus restricting fructose metabolism almost exclusively to this organ. Here we show that myocardial hypoxia actuates fructose metabolism in human and mouse models of pathological cardiac hypertrophy through hypoxia-inducible factor 1 alpha (HIF1 alpha) activation of SF3B1 and SF3B1-mediated splice switching of KHK-A to KHK-C. Heart-specific depletion of SF3B1 orgenetic ablation of Khk, but not Khk-A alone, in mice, suppresses pathological stress-induced fructose metabolism, growth and contractile dysfunction, thus defining signalling components and molecular underpinnings of a fructose metabolism regulatory system crucial for pathological growth.
dc.description.sponsorshipSinergia (Swiss National Science Foundation); Swiss Heart Foundation
dc.identifier.doi10.1038/nature14508
dc.identifier.isi000356782900042
dc.identifier.pmid26083752
dc.identifier.urihttps://resolver.sub.uni-goettingen.de/purl?gro-2/36807
dc.item.fulltextWith Fulltext
dc.notes.statuszu prüfen
dc.notes.submitterNajko
dc.publisherNature Publishing Group
dc.relation.issn1476-4687
dc.relation.issn0028-0836
dc.titleHIF-driven SF3B1 induces KHK-C to enforce fructolysis and heart disease
dc.typejournal_article
dc.type.internalPublicationyes
dc.type.peerReviewedyes
dc.type.statuspublished
dspace.entity.typePublication

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