6533b870fe1ef96bd12d03ba
RESEARCH PRODUCT
A human multisystem disorder with autoinflammation, leukoencephalopathy and hepatopathy is caused by mutations in C2orf69
J. P. DewulfMatthias BegemannE. Van SchaftingenL. Van Den HeuvelC. Van KarnebeekThomas EggermannJoachim WeisPrasad T OommenClaudia HaaseDaniela ChoukairFrançois-guillaume DebrayAnja HolzM. HaeuslerRobert MeyerS. GiesselmannEva LausbergKim OhlHarald SurowyDagmar WieczorekC. LibioulleRamona SalvarinovaStephanie DemuthElsa WiameKlaus TenbrockFlorian KraftMiriam ElbrachtTill BraunschweigClemens SommerMichael MullPatricia KlemmIngo KurthArndt Borkhardtsubject
Signal peptideGeneticsTranscriptomeMicrocephalyOpen reading framebiologymedicineRespiratory chainGlycogen branching enzymebiology.proteinSignal transductionmedicine.diseaseGenedescription
AbstractBackgroundDeciphering the function of the many genes previously classified as uncharacterized “open reading frame” (orf) completes our understanding of cell function and its pathophysiology.MethodsWhole-exome sequencing, yeast 2-hybrid and transcriptome analyses together with molecular characterization are used here to uncover the function of the C2orf69 gene.ResultsWe identify loss-of-function mutations in the uncharacterized C2orf69 gene in eight individuals with brain abnormalities involving hypomyelination and microcephaly, liver dysfunction and recurrent autoinflammation. C2orf69 contains an N-terminal signal peptide that is required and sufficient for mitochondrial localization. Consistent with mitochondrial dysfunction, patients show signs of respiratory chain defect and a CRISPR-Cas9 knockout cell model of C2orf69 shows comparable respiratory chain defects. Patient-derived cells reveal alterations in immunological signaling pathways. Deposits of PAS-positive material in tissues from affected individuals together with decreased glycogen branching enzyme 1 (GBE1) activity indicate an additional impact of C2orf69 on glycogen metabolism.ConclusionOur study identifies C2orf69 as an important regulator of human mitochondrial function and suggests an additional influence on other metabolic pathways.Graphical Abstract
year | journal | country | edition | language |
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2021-03-12 |