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Genetic and phenotypic spectrum associated with IFIH1 gain-of-function.

Gillian I RiceSehoon ParkFrancesco GavazziLaura A AdangLoveline A AyukLien Van EyckLuis SeabraChristophe BarreaRoberta BattiniAlexandre BelotStefan BergThierry Billette de VillemeurAnnette E BleyLubov BlumkinOdile Boespflug-TanguyTracy A BriggsElise BrimbleRussell C DaleNiklas DarinFrançois-Guillaume DebrayValentina De GiorgisJonas DeneckeDiane DoummarGunilla Drake Af HagelsrumDespina EleftheriouMargherita EstienneElisa FazziFrançois FeilletJessica GalliNicholas HartogJulie HarvengtBénédicte HeronDelphine HeronDiedre A KellyDorit LevVirginie LevratJohn H LivingstonItxaso MartiCyril MignotFanny MochelMarie-Christine NouguesIlena OppermannBelén Pérez-DueñasBernt PoppMathieu P RoderoDiana RodriguezVeronica SalettiCia SharpeDavide TondutiGayatri VadlamaniKeith Van HarenMiguel Tomas VilaJulie VogtEvangeline WassmerArnaud WiedemannCallum J WilsonAyelet ZeremChristiane ZweierSameer M ZuberiSimona OrcesiAdeline L VanderverSun HurYanick J Crow
Published in: Human mutation (2020)
IFIH1 gain-of-function has been reported as a cause of a type I interferonopathy encompassing a spectrum of autoinflammatory phenotypes including Aicardi-Goutières syndrome and Singleton Merten syndrome. Ascertaining patients through a European and North American collaboration, we set out to describe the molecular, clinical and interferon status of a cohort of individuals with pathogenic heterozygous mutations in IFIH1. We identified 74 individuals from 51 families segregating a total of 27 likely pathogenic mutations in IFIH1. Ten adult individuals, 13.5% of all mutation carriers, were clinically asymptomatic (with seven of these aged over 50 years). All mutations were associated with enhanced type I interferon signaling, including six variants (22%) which were predicted as benign according to multiple in silico pathogenicity programs. The identified mutations cluster close to the ATP binding region of the protein. These data confirm variable expression and nonpenetrance as important characteristics of the IFIH1 genotype, a consistent association with enhanced type I interferon signaling, and a common mutational mechanism involving increased RNA binding affinity or decreased efficiency of ATP hydrolysis and filament disassembly rate.
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