Literature DB >> 26188006

Missense mutations in TENM4, a regulator of axon guidance and central myelination, cause essential tremor.

Hyun Hor1, Ludmila Francescatto2, Luca Bartesaghi3, Sara Ortega-Cubero4, Maria Kousi2, Oswaldo Lorenzo-Betancor4, Felix J Jiménez-Jiménez5, Alexandre Gironell6, Jordi Clarimón7, Oliver Drechsel8, José A G Agúndez9, Daniela Kenzelmann Broz10, Ruth Chiquet-Ehrismann10, Alberto Lleó11, Francisco Coria12, Elena García-Martin13, Hortensia Alonso-Navarro5, Maria J Martí14, Jaume Kulisevsky15, Charlotte N Hor16, Stephan Ossowski8, Roman Chrast3, Nicholas Katsanis2, Pau Pastor17, Xavier Estivill18.   

Abstract

Essential tremor (ET) is a common movement disorder with an estimated prevalence of 5% of the population aged over 65 years. In spite of intensive efforts, the genetic architecture of ET remains unknown. We used a combination of whole-exome sequencing and targeted resequencing in three ET families. In vitro and in vivo experiments in oligodendrocyte precursor cells and zebrafish were performed to test our findings. Whole-exome sequencing revealed a missense mutation in TENM4 segregating in an autosomal-dominant fashion in an ET family. Subsequent targeted resequencing of TENM4 led to the discovery of two novel missense mutations. Not only did these two mutations segregate with ET in two additional families, but we also observed significant over transmission of pathogenic TENM4 alleles across the three families. Consistent with a dominant mode of inheritance, in vitro analysis in oligodendrocyte precursor cells showed that mutant proteins mislocalize. Finally, expression of human mRNA harboring any of three patient mutations in zebrafish embryos induced defects in axon guidance, confirming a dominant-negative mode of action for these mutations. Our genetic and functional data, which is corroborated by the existence of a Tenm4 knockout mouse displaying an ET phenotype, implicates TENM4 in ET. Together with previous studies of TENM4 in model organisms, our studies intimate that processes regulating myelination in the central nervous system and axon guidance might be significant contributors to the genetic burden of this disorder.
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Year:  2015        PMID: 26188006      PMCID: PMC4692992          DOI: 10.1093/hmg/ddv281

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  55 in total

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Journal:  Nano Lett       Date:  2013-05-23       Impact factor: 11.189

3.  Mapping of a familial essential tremor gene, FET1, to chromosome 3q13.

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Journal:  Nat Genet       Date:  1997-09       Impact factor: 38.330

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Journal:  Nat Genet       Date:  2012-02-26       Impact factor: 38.330

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Journal:  Genome Biol       Date:  2006-08-07       Impact factor: 13.583

10.  Key issues in essential tremor genetics research: Where are we now and how can we move forward?

Authors:  Claudia M Testa
Journal:  Tremor Other Hyperkinet Mov (N Y)       Date:  2013-01-22
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  37 in total

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2.  Common genetic etiology between "multiple sclerosis-like" single-gene disorders and familial multiple sclerosis.

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Review 3.  [Genetics of tremor].

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5.  Gain-of-function mutation p.Arg225Cys in SCN11A causes familial episodic pain and contributes to essential tremor.

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Review 6.  Knowledge gaps and research recommendations for essential tremor.

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Journal:  Parkinsonism Relat Disord       Date:  2016-10-04       Impact factor: 4.891

Review 7.  Teneurins and latrophilins: two giants meet at the synapse.

Authors:  Demet Araç; Jingxian Li
Journal:  Curr Opin Struct Biol       Date:  2019-04-02       Impact factor: 6.809

Review 8.  Essential tremor pathology: neurodegeneration and reorganization of neuronal connections.

Authors:  Elan D Louis; Phyllis L Faust
Journal:  Nat Rev Neurol       Date:  2020-01-20       Impact factor: 42.937

9.  White matter differences between essential tremor and Parkinson disease.

Authors:  Meher R Juttukonda; Giulia Franco; Dario J Englot; Ya-Chen Lin; Kalen J Petersen; Paula Trujillo; Peter Hedera; Bennett A Landman; Hakmook Kang; Manus J Donahue; Peter E Konrad; Benoit M Dawant; Daniel O Claassen
Journal:  Neurology       Date:  2018-11-30       Impact factor: 9.910

10.  DNA methylation in the pathophysiology of hyperphenylalaninemia in the PAH(enu2) mouse model of phenylketonuria.

Authors:  S F Dobrowolski; J Lyons-Weiler; K Spridik; J Vockley; K Skvorak; A Biery
Journal:  Mol Genet Metab       Date:  2016-01-14       Impact factor: 4.797

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