Literature DB >> 22040906

Abnormal nuclear envelope in the cerebellar Purkinje cells and impaired motor learning in DYT11 myoclonus-dystonia mouse models.

Fumiaki Yokoi1, Mai T Dang, Guang Yang, Jindong Li, Atbin Doroodchi, Tong Zhou, Yuqing Li.   

Abstract

Myoclonus-dystonia (M-D) is a movement disorder characterized by myoclonic jerks with dystonia. DYT11 M-D is caused by mutations in SGCE which codes for ɛ-sarcoglycan. SGCE is maternally imprinted and paternally expressed. Abnormal nuclear envelope has been reported in mouse models of DYT1 generalized torsion dystonia. However, it is not known whether similar alterations occur in DYT11 M-D. We developed a mouse model of DYT11 M-D using paternally inherited Sgce heterozygous knockout (Sgce KO) mice and reported that they had myoclonus and motor coordination and learning deficits in the beam-walking test. However, the specific brain regions that contribute to these phenotypes have not been identified. Since ɛ-sarcoglycan is highly expressed in the cerebellar Purkinje cells, here we examined the nuclear envelope in these cells using a transmission electron microscope and found that they are abnormal in Sgce KO mice. Our results put DYT11 M-D in a growing family of nuclear envelopathies. To analyze the effect of loss of ɛ-sarcoglycan function in the cerebellar Purkinje cells, we produced paternally inherited cerebellar Purkinje cell-specific Sgce conditional knockout (Sgce pKO) mice. Sgce pKO mice showed motor learning deficits, while they did not show abnormal nuclear envelope in the cerebellar Purkinje cells, robust motor deficits, or myoclonus. The results suggest that ɛ-sarcoglycan in the cerebellar Purkinje cells contributes to the motor learning, while loss of ɛ-sarcoglycan in other brain regions may contribute to nuclear envelope abnormality, myoclonus and motor coordination deficits.
Copyright © 2011 Elsevier B.V. All rights reserved.

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Year:  2011        PMID: 22040906      PMCID: PMC3242862          DOI: 10.1016/j.bbr.2011.10.024

Source DB:  PubMed          Journal:  Behav Brain Res        ISSN: 0166-4328            Impact factor:   3.332


  64 in total

1.  Cre recombinase expression in cerebellar Purkinje cells.

Authors:  J J Barski; K Dethleffsen; M Meyer
Journal:  Genesis       Date:  2000 Nov-Dec       Impact factor: 2.487

2.  Tottering mouse motor dysfunction is abolished on the Purkinje cell degeneration (pcd) mutant background.

Authors:  D B Campbell; J B North; E J Hess
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3.  Widespread recombinase expression using FLPeR (flipper) mice.

Authors:  F W Farley; P Soriano; L S Steffen; S M Dymecki
Journal:  Genesis       Date:  2000 Nov-Dec       Impact factor: 2.487

4.  Mutations in the gene encoding epsilon-sarcoglycan cause myoclonus-dystonia syndrome.

Authors:  A Zimprich; M Grabowski; F Asmus; M Naumann; D Berg; M Bertram; K Scheidtmann; P Kern; J Winkelmann; B Müller-Myhsok; L Riedel; M Bauer; T Müller; M Castro; T Meitinger; T M Strom; T Gasser
Journal:  Nat Genet       Date:  2001-09       Impact factor: 38.330

Review 5.  Nuclear envelope proteins and associated diseases.

Authors:  A Nagano; K Arahata
Journal:  Curr Opin Neurol       Date:  2000-10       Impact factor: 5.710

6.  Zac1 (Lot1), a potential tumor suppressor gene, and the gene for epsilon-sarcoglycan are maternally imprinted genes: identification by a subtractive screen of novel uniparental fibroblast lines.

Authors:  G Piras; A El Kharroubi; S Kozlov; D Escalante-Alcalde; L Hernandez; N G Copeland; D J Gilbert; N A Jenkins; C L Stewart
Journal:  Mol Cell Biol       Date:  2000-05       Impact factor: 4.272

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Review 8.  The pathophysiological basis of dystonias.

Authors:  Xandra O Breakefield; Anne J Blood; Yuqing Li; Mark Hallett; Phyllis I Hanson; David G Standaert
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9.  Myoclonus-dystonia: clinical and electrophysiologic pattern related to SGCE mutations.

Authors:  E Roze; E Apartis; F Clot; N Dorison; S Thobois; L Guyant-Marechal; C Tranchant; P Damier; D Doummar; N Bahi-Buisson; N André-Obadia; D Maltete; A Echaniz-Laguna; Y Pereon; Y Beaugendre; S Dupont; T De Greslan; C P Jedynak; G Ponsot; J C Dussaule; A Brice; A Dürr; M Vidailhet
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4.  Electromyographic evidence in support of a knock-in mouse model of DYT1 Dystonia.

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5.  Improved motor performance in Dyt1 ΔGAG heterozygous knock-in mice by cerebellar Purkinje-cell specific Dyt1 conditional knocking-out.

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6.  The abnormal firing of Purkinje cells in the knockin mouse model of DYT1 dystonia.

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7.  Role of major and brain-specific Sgce isoforms in the pathogenesis of myoclonus-dystonia syndrome.

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Review 8.  ε-Sarcoglycan: Unraveling the Myoclonus-Dystonia Gene.

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9.  Mutation in ε-Sarcoglycan Induces a Myoclonus-Dystonia Syndrome-Like Movement Disorder in Mice.

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10.  The Role of BTBD9 in the Cerebellum, Sleep-like Behaviors and the Restless Legs Syndrome.

Authors:  Shangru Lyu; Hong Xing; Mark P DeAndrade; Pablo D Perez; Fumiaki Yokoi; Marcelo Febo; Arthur S Walters; Yuqing Li
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