학술논문

De novo EIF2AK1 and EIF2AK2 Variants Are Associated with Developmental Delay, Leukoencephalopathy, and Neurologic Decompensation
Document Type
Report
Author abstract
Author
Mao, DongxueReuter, Chloe M.Ruzhnikov, Maura R.Z.Beck, Anita E.Farrow, Emily G.Emrick, Lisa T.Rosenfeld, Jill A.Mackenzie, Katherine M.Robak, LaurieWheeler, Matthew T.Burrage, Lindsay C.Jain, MahimLiu, PengfeiCalame, DanielKury, SebastienSillesen, MartinSchmitz-Abe, KlausTonduti, DavideSpaccini, LuiginaIascone, MariaGenetti, Casie A.Koenig, Mary K.Graf, MadelineTran, AlyssaAlejandro, MercedesAcosta, Maria T.Adam, MargaretAdams, David R.Agrawal, Pankaj B.Alejandro, Mercedes E.Allard, PatrickAlvey, JustinAmendola, LauraAndrews, AshleyAshley, Euan A.Azamian, Mahshid S.Bacino, Carlos A.Bademci, GuneyBaker, EvaBalasubramanyam, AshokBaldridge, DustinBale, JimBamshad, MichaelBarbouth, DeborahBatzli, Gabriel F.Bayrak-Toydemir, PinarBeck, AnitaBeggs, Alan H.Bejerano, GillBellen, Hugo J.Bennet, JimmyBerg-Rood, BeverlyBernier, RaphaelBernstein, Jonathan A.Berry, Gerard T.Bican, AnnaBivona, StephanieBlue, ElizabethBohnsack, JohnBonnenmann, CarstenBonner, DevonBotto, LorenzoBriere, Lauren C.Brokamp, EllyBurke, Elizabeth A.Butte, Manish J.Byers, PeterCarey, JohnCarrasquillo, OlveenChang, Ta Chen PeterChanprasert, SirisakChao, Hsiao-TuanClark, Gary D.Coakley, Terra R.Cobban, Laurel A.Cogan, Joy D.Cole, F. SessionsColley, Heather A.Cooper, Cynthia M.Cope, HeidiCraigen, William J.Cunningham, MichaelD'Souza, PrecillaDai, HongzhengDasari, SurendraDavids, MariskaDayal, Jyoti G.Dell'Angelica, Esteban C.Dhar, Shweta U.Dipple, KatrinaDoherty, DanielDorrani, NaghmehDouine, Emilie D.Draper, David D.Duncan, LauraEarl, DawnEckstein, David J.Eng, Christine M.Esteves, CeciliaEstwick, TyraFernandez, LilianaFerreira, CarlosFieg, Elizabeth L.Fisher, Paul G.Fogel, Brent L.Forghani, IrmanFresard, LaureGahl, William A.Glass, IanGodfrey, Rena A.Golden-Grant, KatieGoldman, Alica M.Goldstein, David B.Grajewski, AlanaGroden, Catherine A.Gropman, Andrea L.Hahn, SihounHamid, RizwanHanchard, Neil A.Hayes, NicholeHigh, FrancesHing, AnneHisama, Fuki M.Holm, Ingrid A.Hom, JasonHorike-Pyne, MarthaHuang, AldenHuang, YongIsasi, RosarioJamal, FarihaJarvik, Gail P.Jarvik, JeffreyJayadev, SumanJiang, Yong-huiJohnston, Jean M.Karaviti, LefkotheaKelley, Emily G.Kiley, DanaKohane, Isaac S.Kohler, Jennefer N.Krakow, DeborahKrasnewich, Donna M.Korrick, SusanKoziura, MaryKrier, Joel B.Lalani, Seema R.Lam, ByronLam, ChristinaLanpher, Brendan C.Lanza, Ian R.Lau, C. ChristopherLeBlanc, KimberlyLee, Brendan H.Lee, HaneLevitt, RoyLewis, Richard A.Lincoln, Sharyn A.Liu, Xue ZhongLongo, NicolaLoo, Sandra K.Loscalzo, JosephMaas, Richard L.Macnamara, Ellen F.MacRae, Calum A.Maduro, Valerie V.Majcherska, Marta M.Malicdan, May Christine V.Mamounas, Laura A.Manolio, Teri A.Mao, RongMaravilla, KennethMarkello, Thomas C.Marom, RonitMarth, GaborMartin, Beth A.Martin, Martin G.Martinez-Agosto, Julian A.Marwaha, ShrutiMcCauley, JacobMcConkie-Rosell, AllynMcCormack, Colleen E.McCray, Alexa T.Mefford, HeatherMerritt, J. LawrenceMight, MatthewMirzaa, GhaydaMorava-Kozicz, EvaMoretti, Paolo M.Morimoto, MarieMulvihill, John J.Murdock, David R.Nath, AviNelson, Stan F.Newman, John H.Nicholas, Sarah K.Nickerson, DeborahNovacic, DonnaOglesbee, DevinOrengo, James P.Pace, LauraPak, StephenPallais, J. CarlPalmer, Christina G.S.Papp, Jeanette C.Parker, Neil H.Phillips, John A., IIIPosey, Jennifer E.Postlethwait, John H.Potocki, LorrainePusey, Barbara N.Quinlan, AaronRaskind, WendyRaja, Archana N.Renteria, GeneceeRives, LynetteRobertson, Amy K.Rodan, Lance H.Rowley, Robb K.Ruzhnikov, MauraSacco, RalphSampson, Jacinda B.Samson, Susan L.Saporta, MarioScott, C. RonSchaechter, JudySchedl, TimothySchoch, KellyScott, Daryl A.Shakachite, LisaSharma, PrashantShashi, VandanaShin, JimannSigner, RebeccaSillari, Catherine H.Silverman, Edwin K.Sinsheimer, Janet S.Sisco, KathySmith, Kevin S.Solnica-Krezel, LiliannaSpillmann, Rebecca C.Stoler, Joan M.Stong, NicholasSullivan, Jennifer A.Sun, AngelaSutton, ShirleySweetser, David A.Sybert, VirginiaTabor, Holly K.Tamburro, Cecelia P.Tan, Queenie K.-G.Tekin, MustafaTelischi, FredThorson, WillaTifft, Cynthia J.Toro, CamiloTran, Alyssa A.Urv, Tiina K.Velinder, MattViskochil, DaveVogel, Tiphanie P.Wahl, Colleen E.Wallace, StephanieWalley, Nicole M.Walsh, Chris A.Walker, MelissaWambach, JenniferWan, JijunWang, Lee-kaiWangler, Michael F.Ward, Patricia A.Wegner, DanielWener, MarkWesterfield, MonteWise, Anastasia L.Wolfe, Lynne A.Woods, Jeremy D.Yamamoto, ShinyaYang, JohnYoon, Amanda J.Yu, GuoyunZastrow, Diane B.Zhao, ChunliZuchner, Stephan
Source
American Journal of Human Genetics. April 2, 2020, Vol. 106 Issue 4, 570
Subject
United States
Language
English
ISSN
0002-9297
Abstract
Keywords hypomyelination; abnormal myelination; hypotonia; movement disorders; cognitive impairment; regression; febrile illnesses; integrated stress response; EIF2S1; EIF2[alpha] EIF2AK1 and EIF2AK2 encode members of the eukaryotic translation initiation factor 2 alpha kinase (EIF2AK) family that inhibits protein synthesis in response to physiologic stress conditions. EIF2AK2 is also involved in innate immune response and the regulation of signal transduction, apoptosis, cell proliferation, and differentiation. Despite these findings, human disorders associated with deleterious variants in EIF2AK1 and EIF2AK2 have not been reported. Here, we describe the identification of nine unrelated individuals with heterozygous de novo missense variants in EIF2AK1 (1/9) or EIF2AK2 (8/9). Features seen in these nine individuals include white matter alterations (9/9), developmental delay (9/9), impaired language (9/9), cognitive impairment (8/9), ataxia (6/9), dysarthria in probands with verbal ability (6/9), hypotonia (7/9), hypertonia (6/9), and involuntary movements (3/9). Individuals with EIF2AK2 variants also exhibit neurological regression in the setting of febrile illness or infection. We use mammalian cell lines and proband-derived fibroblasts to further confirm the pathogenicity of variants in these genes and found reduced kinase activity. EIF2AKs phosphorylate eukaryotic translation initiation factor 2 subunit 1 (EIF2S1, also known as EIF2[alpha]), which then inhibits EIF2B activity. Deleterious variants in genes encoding EIF2B proteins cause childhood ataxia with central nervous system hypomyelination/vanishing white matter (CACH/VWM), a leukodystrophy characterized by neurologic regression in the setting of febrile illness and other stressors. Our findings indicate that EIF2AK2 missense variants cause a neurodevelopmental syndrome that may share phenotypic and pathogenic mechanisms with CACH/VWM.