Genetics of familial adult myoclonus epilepsy: From linkage studies to noncoding repeat expansions

Author:

Corbett Mark A.1ORCID,Depienne Christel2ORCID,Veneziano Liana3ORCID,Klein Karl Martin45ORCID,Brancati Francesco367,Guerrini Renzo8,Zara Federico9,Tsuji Shoji1011,Gecz Jozef112ORCID

Affiliation:

1. Robinson Research Institute and Adelaide Medical School University of Adelaide Adelaide South Australia Australia

2. Institute of Human Genetics University Hospital Essen, University Duisburg–Essen Essen Germany

3. Institute of Translational Pharmacology National Research Council Rome Italy

4. Departments of Clinical Neurosciences, Medical Genetics, and Community Health Sciences, Hotchkiss Brain Institute and Alberta Children's Hospital Research Institute, Cumming School of Medicine, University of Calgary Calgary Alberta Canada

5. Epilepsy Center Frankfurt Rhine–Main, Department of Neurology, Center of Neurology and Neurosurgery Center for Personalized Translational Epilepsy Research, University Hospital, Goethe University Frankfurt Frankfurt am Main Germany

6. Medical Genetics, Department of Life, Health, and Environmental Sciences University of L'Aquila L'Aquila Italy

7. Laboratory of Human Functional Genomics Istituto di Ricovero e Cura a Carattere Scientifico (IRCCS) San Raffaele Rome Italy

8. Neuroscience and Neurogenetics Department Meyer Children's Hospital Florence Italy

9. Laboratory of Neurogenetics IRCCS Institute "G. Gaslini" Genoa Italy

10. Department of Neurology, Graduate School of Medicine University of Tokyo Tokyo Japan

11. Institute of Medical Genomics International University of Health and Welfare Chiba Japan

12. South Australian Health and Medical Research Institute Adelaide South Australia Australia

Abstract

AbstractFamilial adult myoclonus epilepsy (FAME) is a genetic epilepsy syndrome that for many years has resisted understanding of its underlying molecular cause. This review covers the history of FAME genetic studies worldwide, starting with linkage and culminating in the discovery of noncoding TTTTA and inserted TTTCA pentanucleotide repeat expansions within six different genes to date (SAMD12, STARD7, MARCHF6, YEATS2, TNRC6A, and RAPGEF2). FAME occurs worldwide; however, repeat expansions in particular genes have regional geographical distributions. FAME repeat expansions are dynamic in nature, changing in length and structure within germline and somatic tissues. This variation poses challenges for molecular diagnosis such that molecular methods used to identify FAME repeat expansions typically require a trade‐off between cost and efficiency. A rigorous evaluation of the sensitivity and specificity of each molecular approach remains to be performed. The origin of FAME repeat expansions and the genetic and environmental factors that modulate repeat variability are not well defined. Longer repeats and particular arrangements of the TTTTA and TTTCA motifs within an expansion are correlated with earlier onset and increased severity of disease. Other factors such as maternal or paternal inheritance, parental age, and repeat length alone have been suggested to influence repeat variation; however, further research is required to confirm this. The history of FAME genetics to the present is a chronicle of perseverance and predominantly collaborative efforts that yielded a successful outcome. The discovery of FAME repeats will spark progress toward a deeper understanding of the molecular pathogenesis of FAME, discovery of new loci, and development of cell and animal models.

Funder

Deutsche Forschungsgemeinschaft

National Health and Medical Research Council

Publisher

Wiley

Subject

Neurology (clinical),Neurology

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