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PMID: 27164707 Published · ppublish English Case Reports Journal Article

Gain-of-function FHF1 mutation causes early-onset epileptic encephalopathy with cerebellar atrophy.

Neurology ·Vol. 86 ·No. 23 ·2016-06-07 ·Pages 2162-70

Siekierska A, Isrie M, Liu Y, Scheldeman C, Vanthillo N, Lagae L, de Witte PA, Van Esch H, Goldfarb M, Buyse GM

Abstract

Voltage-gated sodium channel (Nav)-encoding genes are among early-onset epileptic encephalopathies (EOEE) targets, suggesting that other genes encoding Nav-binding proteins, such as fibroblast growth factor homologous factors (FHFs), may also play roles in these disorders. To identify additional genes for EOEE, we performed whole-exome sequencing in a family quintet with 2 siblings with a lethal disease characterized by EOEE and cerebellar atrophy. The pathogenic nature and functional consequences of the identified sequence alteration were determined by electrophysiologic studies in vitro and in vivo. A de novo heterozygous missense mutation was identified in the FHF1 gene (FHF1AR114H, FHF1BR52H) in the 2 affected siblings. The mutant FHF1 proteins had a strong gain-of-function phenotype in transfected Neuro2A cells, enhancing the depolarizing shifts in Nav1.6 voltage-dependent fast inactivation, predicting increased neuronal excitability. Surprisingly, the gain-of-function effect is predicted to result from weaker interaction of mutant FHF1 with the Nav cytoplasmic tail. Transgenic overexpression of mutant FHF1B in zebrafish larvae enhanced epileptiform discharges, demonstrating the epileptic potential of this FHF1 mutation in the affected children. Our data demonstrate that gain-of-function FHF mutations can cause neurologic disorder, and expand the repertoire of genetic causes (FHF1) and mechanisms (altered Nav gating) underlying EOEE and cerebellar atrophy.

MeSH Terms
Age of Onset Animals Animals, Genetically Modified Atrophy Brain/diagnostic imaging,physiopathology Cell Line, Tumor Cerebellar Diseases/diagnostic imaging,genetics Child Child, Preschool Epilepsy/diagnostic imaging,genetics,physiopathology Fatal Outcome Female Fibroblast Growth Factors/genetics,metabolism Humans Male Mice Mutation NAV1.6 Voltage-Gated Sodium Channel/genetics,metabolism Siblings Zebrafish
Chemicals
FGF12 protein, human NAV1.6 Voltage-Gated Sodium Channel Scn8a protein, mouse Fibroblast Growth Factors
Authors & Affiliations
10 authors, click to expand affiliations / ORCID
Siekierska Aleksandra
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Isrie Mala
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Liu Yue
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Scheldeman Chloë
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Vanthillo Niels
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Lagae Lieven
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
de Witte Peter A M
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Van Esch Hilde
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Goldfarb Mitchell
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY.
Buyse Gunnar M
From the Laboratory for Molecular Biodiscovery, Department of Pharmaceutical and Pharmacological Sciences (A.S., C.S., N.V., P.A.M.d.W.), and Laboratory for the Genetics of Cognition (M.I.), University of Leuven; Center for Human Genetics (M.I., H.V.E.) and Child Neurology (L.L., G.M.B.), University Hospitals Leuven; Department of Biological Sciences (Y.L., M.G.), Hunter College of City University, New York; and Graduate Program in Biology/Neuroscience at City University (Y.L.), New York, NY. gunnar.buyse@uzleuven.be.
References (31)
31 references, click to expand
  1. Fibroblast growth factor 14 is an intracellular modulator of voltage-gated sodium channels.
    J Physiol. 2005 Nov 15;569(Pt 1):179-93 PMID: 16166153
  2. FGF14 regulates the intrinsic excitability of cerebellar Purkinje neurons.
    Neurobiol Dis. 2009 Jan;33(1):81-8 PMID: 18930825
  3. Fibroblast growth factor homologous factors control neuronal excitability through modulation of voltage-gated sodium channels.
    Neuron. 2007 Aug 2;55(3):449-63 PMID: 17678857
  4. Long-term inactivation particle for voltage-gated sodium channels.
    J Physiol. 2010 Oct 1;588(Pt 19):3695-711 PMID: 20679355
  5. MutationTaster2: mutation prediction for the deep-sequencing age.
    Nat Methods. 2014 Apr;11(4):361-2 PMID: 24681721
  6. Fibroblast growth factor homologous factor 2B: association with Nav1.6 and selective colocalization at nodes of Ranvier of dorsal root axons.
    J Neurosci. 2004 Jul 28;24(30):6765-75 PMID: 15282281
  7. SCN5A variant that blocks fibroblast growth factor homologous factor regulation causes human arrhythmia.
    Proc Natl Acad Sci U S A. 2015 Oct 6;112(40):12528-33 PMID: 26392562
  8. Crystal structure of the ternary complex of a NaV C-terminal domain, a fibroblast growth factor homologous factor, and calmodulin.
    Structure. 2012 Jul 3;20(7):1167-76 PMID: 22705208
  9. Xq26.3 microdeletion in a male with Wildervanck Syndrome.
    Ophthalmic Genet. 2014 Mar;35(1):18-24 PMID: 23373430
  10. The Genome Analysis Toolkit: a MapReduce framework for analyzing next-generation DNA sequencing data.
    Genome Res. 2010 Sep;20(9):1297-303 PMID: 20644199
  11. Heterozygosity for a protein truncation mutation of sodium channel SCN8A in a patient with cerebellar atrophy, ataxia, and mental retardation.
    J Med Genet. 2006 Jun;43(6):527-30 PMID: 16236810
  12. Transgenesis in zebrafish with the tol2 transposon system.
    Methods Mol Biol. 2009;561:41-63 PMID: 19504063
  13. A novel epilepsy mutation in the sodium channel SCN1A identifies a cytoplasmic domain for beta subunit interaction.
    J Neurosci. 2004 Nov 3;24(44):10022-34 PMID: 15525788
  14. Fast-onset long-term open-state block of sodium channels by A-type FHFs mediates classical spike accommodation in hippocampal pyramidal neurons.
    J Neurosci. 2014 Nov 26;34(48):16126-39 PMID: 25429153
  15. A method and server for predicting damaging missense mutations.
    Nat Methods. 2010 Apr;7(4):248-9 PMID: 20354512
  16. De novo pathogenic SCN8A mutation identified by whole-genome sequencing of a family quartet affected by infantile epileptic encephalopathy and SUDEP.
    Am J Hum Genet. 2012 Mar 9;90(3):502-10 PMID: 22365152
  17. Voltage-gated sodium channel-associated proteins and alternative mechanisms of inactivation and block.
    Cell Mol Life Sci. 2012 Apr;69(7):1067-76 PMID: 21947499
  18. Crystal structure of a fibroblast growth factor homologous factor (FHF) defines a conserved surface on FHFs for binding and modulation of voltage-gated sodium channels.
    J Biol Chem. 2009 Jun 26;284(26):17883-96 PMID: 19406745
  19. Early onset epileptic encephalopathy caused by de novo SCN8A mutations.
    Epilepsia. 2014 Jul;55(7):994-1000 PMID: 24888894
  20. Revised terminology and concepts for organization of seizures and epilepsies: report of the ILAE Commission on Classification and Terminology, 2005-2009.
    Epilepsia. 2010 Apr;51(4):676-85 PMID: 20196795
  21. Primer3 on the WWW for general users and for biologist programmers.
    Methods Mol Biol. 2000;132:365-86 PMID: 10547847
  22. Molecular bases and clinical spectrum of early infantile epileptic encephalopathies.
    Eur J Med Genet. 2012 May;55(5):299-306 PMID: 22548976
  23. Mutations in STX1B, encoding a presynaptic protein, cause fever-associated epilepsy syndromes.
    Nat Genet. 2014 Dec;46(12):1327-32 PMID: 25362483
  24. Disruption of Fgf13 causes synaptic excitatory-inhibitory imbalance and genetic epilepsy and febrile seizures plus.
    J Neurosci. 2015 Jun 10;35(23):8866-81 PMID: 26063919
  25. Fast and accurate short read alignment with Burrows-Wheeler transform.
    Bioinformatics. 2009 Jul 15;25(14):1754-60 PMID: 19451168
  26. Fibroblast growth factors: from molecular evolution to roles in development, metabolism and disease.
    J Biochem. 2011 Feb;149(2):121-30 PMID: 20940169
  27. The phenotypic spectrum of SCN8A encephalopathy.
    Neurology. 2015 Feb 3;84(5):480-9 PMID: 25568300
  28. ANNOVAR: functional annotation of genetic variants from high-throughput sequencing data.
    Nucleic Acids Res. 2010 Sep;38(16):e164 PMID: 20601685
  29. A mutation in the fibroblast growth factor 14 gene is associated with autosomal dominant cerebellar ataxia [corrected].
    Am J Hum Genet. 2003 Jan;72(1):191-9 PMID: 12489043
  30. A novel de novo mutation of SCN8A (Nav1.6) with enhanced channel activation in a child with epileptic encephalopathy.
    Neurobiol Dis. 2014 Sep;69:117-23 PMID: 24874546
  31. Fibroblast growth factor (FGF) homologous factors share structural but not functional homology with FGFs.
    J Biol Chem. 2003 Sep 5;278(36):34226-36 PMID: 12815063
Article Info
Journal
Neurology
Abbr.
Neurology
ISSN
1526-632X
Published
2016-06-07
Epub
2016-00-04
Pages
2162-70
Language
English
Region
United States
NLM ID
0401060
PMCID
PMC4898311
Subset
IM
Grants
NIGMS NIH HHS · R01 GM098540 · United States
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