Mutations in MICAL-1cause autosomal-dominant lateral temporal epilepsy

被引:34
作者
Dazzo, Emanuela [1 ]
Rehberg, Kati [2 ]
Michelucci, Roberto [3 ]
Passarelli, Daniela [4 ]
Boniver, Clementina [5 ]
Dri, Valeria Vianello [6 ]
Striano, Pasquale [7 ]
Striano, Salvatore [8 ]
Pasterkamp, R. Jeroen [2 ]
Nobile, Carlo [1 ,9 ]
机构
[1] CNR, Sect Padua, Neurosci Inst, Padua, Italy
[2] Univ Utrecht, Dept Translat Neurosci, Brain Ctr Rudolf Magnus, UMC Utrecht, Utrecht, Netherlands
[3] Bellaria Hosp, IRCCS Inst Neurol Sci Bologna, Neurol Unit, Bologna, Italy
[4] Infermi Hosp, Div Neurol, Faenza, Italy
[5] Univ Padua, Dept Pediat, Clin Neurophysiol, Padua, Italy
[6] APSS Trento, Dept Mental Hlth, Child & Adolescent Neuropsichiat 1, Trento, Italy
[7] Univ Genoa, G Gaslini Inst, Dept Neurosci Rehabil Ophthalmol Genet Maternal &, Pediat Neurol & Muscular Dis Unit, Genoa, Italy
[8] Univ Naples Federico II, Dept Neurol Sci, Naples, Italy
[9] Univ Padua, Dept Biomed Sci, Padua, Italy
关键词
AUDITORY FEATURES; GRIN2A MUTATIONS; LGI1; MUTATIONS; ACTIN CYTOSKELETON; SEQUENCING DATA; LOBE EPILEPSY; PROTEIN; REELIN; FAMILY; GENE;
D O I
10.1002/ana.25167
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
ObjectiveAutosomal-dominant lateral temporal epilepsy (ADLTE) is a genetic focal epilepsy characterized by auditory symptoms. Two genes, LGI1 and RELN, encoding secreted proteins, are implicated in the etiology of ADLTE, but half of the affected families remain genetically unsolved, and the underlying molecular mechanisms are yet to be clarified. We aimed to identify additional genes causing ADLTE to better understand the genetic basis and molecular pathway underlying this epileptic disorder. MethodsA cohort of Italian ADLTE families was examined by whole exome sequencing combined with genome-wide single-nucleotide polymorphism-array linkage analysis. ResultsWe identified two ADLTE-causing variants in the MICAL-1 gene: a p.Gly150Ser substitution occurring in the enzymatically active monooxygenase (MO) domain and a p.Ala1065fs frameshift indel in the C-terminal domain, which inhibits the oxidoreductase activity of the MO domain. Each variant segregated with ADLTE in a single family. Examination of candidate variants in additional genes excluded their implication in ADLTE. In cell-based assays, both variants significantly increased MICAL-1 oxidoreductase activity and induced cell contraction in COS7 cells, which likely resulted from deregulation of F-actin dynamics. InterpretationMICAL-1 oxidoreductase activity induces disassembly of actin filaments, thereby regulating the organization of the actin cytoskeleton in developing and adult neurons and in other cell types. This suggests that dysregulation of the actin cytoskeleton dynamics is a likely mechanism by which MICAL-1 pathogenic variants lead to ADLTE. Ann Neurol 2018;83:483-493
引用
收藏
页码:483 / 493
页数:11
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