학술논문

Loss-of-function mutations in UDP-Glucose 6-Dehydrogenase cause recessive developmental epileptic encephalopathy.
Document Type
article
Author
Hengel, HolgerBosso-Lefèvre, CéliaGrady, GeorgeSzenker-Ravi, EmmanuelleLi, HankunPierce, SarahLebigot, ÉliseTan, Thong-TeckEio, Michelle YNarayanan, GunaseelanUtami, Kagistia HanaYau, MonicaHandal, NaderDeigendesch, WernerKeimer, ReinhardMarzouqa, Hiyam MGunay-Aygun, MeralMuriello, Michael JVerhelst, HeleneWeckhuysen, SarahMahida, SonalNaidu, SakkubaiThomas, Terrence GLim, Jiin YingTan, Ee ShienHaye, DamienWillemsen, Michèl AAPOegema, RenskeMitchell, Wendy GPierson, Tyler MarkAndrews, Marisa VWilling, Marcia CRodan, Lance HBarakat, Tahsin Stefanvan Slegtenhorst, MarjonGavrilova, Ralitza HMartinelli, DiegoGilboa, TalTamim, Abdullah MHashem, Mais OAlSayed, Moeenaldeen DAbdulrahim, Maha MAl-Owain, MohammedAwaji, AliMahmoud, Adel AHFaqeih, Eissa AAsmari, Ali AlAlgain, Sulwan MJad, Lamyaa AAldhalaan, Hesham MHelbig, IngoKoolen, David ARiess, AngelikaKraegeloh-Mann, IngeborgBauer, PeterGulsuner, SuleymanStamberger, HannahNg, Alvin Yu JinTang, ShaTohari, SumantyKeren, BorisSchultz-Rogers, Laura EKlee, Eric WBarresi, SabinaTartaglia, MarcoMor-Shaked, HagarMaddirevula, SateeshBegtrup, AmberTelegrafi, AidaPfundt, RolphSchüle, RebeccaCiruna, BrianBonnard, CarinePouladi, Mahmoud AStewart, James CClaridge-Chang, AdamLefeber, Dirk JAlkuraya, Fowzan SMathuru, Ajay SVenkatesh, ByrappaBarycki, Joseph JSimpson, Melanie AJamuar, Saumya SSchöls, LudgerReversade, Bruno
Source
Nature communications. 11(1)
Subject
Organoids
Animals
Zebrafish
Humans
Epilepsy
Syndrome
Oxidoreductases
Pedigree
Kinetics
Genes
Recessive
Alleles
Adolescent
Child
Child
Preschool
Infant
Female
Male
Protein Domains
Loss of Function Mutation
Preschool
Genes
Recessive
Language
Abstract
Developmental epileptic encephalopathies are devastating disorders characterized by intractable epileptic seizures and developmental delay. Here, we report an allelic series of germline recessive mutations in UGDH in 36 cases from 25 families presenting with epileptic encephalopathy with developmental delay and hypotonia. UGDH encodes an oxidoreductase that converts UDP-glucose to UDP-glucuronic acid, a key component of specific proteoglycans and glycolipids. Consistent with being loss-of-function alleles, we show using patients' primary fibroblasts and biochemical assays, that these mutations either impair UGDH stability, oligomerization, or enzymatic activity. In vitro, patient-derived cerebral organoids are smaller with a reduced number of proliferating neuronal progenitors while mutant ugdh zebrafish do not phenocopy the human disease. Our study defines UGDH as a key player for the production of extracellular matrix components that are essential for human brain development. Based on the incidence of variants observed, UGDH mutations are likely to be a frequent cause of recessive epileptic encephalopathy.