Literature DB >> 16725123

Molecular characterization of the genetic lesion in Dystonia musculorum (dt-Alb) mice.

Dmitry Goryunov1, Adijat Adebola, Julius J Jefferson, Conrad L Leung, Anne Messer, Ronald K H Liem.   

Abstract

Dystonia musculorum (dt) is an inherited autosomal recessive neuropathy in mice. Homozygous animals display primarily sensory neurodegeneration resulting in a severe loss of coordination. Several dt strains exist, including spontaneous mutants dt-Alb (Albany), dt-J (Jackson Labs), and dt-Frk (Frankel), and a transgene insertion mutant, Tg4. They contain mutations in the gene encoding Bullous Pemphigoid Antigen 1 (BPAG1), or dystonin. BPAG1 is a member of the plakin family of cytolinker proteins. BPAG1 is alternatively spliced to produce several isoforms, including the major brain-specific isoform, BPAG1a. The neurological phenotype observed in dt-Alb mice is thought to result from the absence of BPAG1a protein in the developing nervous system. The goal of this study was to determine the precise molecular nature of the dt-Alb mutation and examine residual BPAG1 expression in homozygous dt-Alb mice. A combination of molecular biological strategies revealed that the dt-Alb lesion is a deletion-insertion eliminating a large part of the coding region of BPAG1a. The molecular lesion in the dt-Alb BPAG1 allele is expected to render it completely non-functional. Although transcripts corresponding to BPAG1 segments still remaining in homozygous dt-Alb mice could be detected by RT-PCR, there was no positive signal for BPAG1 in the brain of dt-Alb mice by Northern blotting. Western blotting with polyclonal anti-BPAG1 antibodies confirmed the absence of functional BPAG1 protein (full-length or truncated) in the dt-Alb brain. Our identification of the 5' junction of the dt-Alb insertion makes it possible to genotype dt-Alb animals by standard PCR.

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Year:  2006        PMID: 16725123     DOI: 10.1016/j.brainres.2006.04.068

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  8 in total

1.  Axonopathy in the Central Nervous System Is the Hallmark of Mice with a Novel Intragenic Null Mutation of Dystonin.

Authors:  Frauke Seehusen; Kirsten Kiel; Stefano Jottini; Peter Wohlsein; Andre Habierski; Katharina Seibel; Tanja Vogel; Henning Urlaub; Martin Kollmar; Wolfgang Baumgärtner; Ulrike Teichmann
Journal:  Genetics       Date:  2016-07-08       Impact factor: 4.562

2.  Nervous-tissue-specific elimination of microtubule-actin crosslinking factor 1a results in multiple developmental defects in the mouse brain.

Authors:  Dmitry Goryunov; Cui-Zhen He; Chyuan-Sheng Lin; Conrad L Leung; Ronald K H Liem
Journal:  Mol Cell Neurosci       Date:  2010-02-17       Impact factor: 4.314

3.  The cytolinker Pigs is a direct target and a negative regulator of Notch signalling.

Authors:  Mary K Pines; Ben E Housden; Fred Bernard; Sarah J Bray; Katja Röper
Journal:  Development       Date:  2010-02-11       Impact factor: 6.868

4.  Isoform-specific mutation in Dystonin-b gene causes late-onset protein aggregate myopathy and cardiomyopathy.

Authors:  Nozomu Yoshioka; Masayuki Kurose; Masato Yano; Dang Minh Tran; Shujiro Okuda; Yukiko Mori-Ochiai; Masao Horie; Toshihiro Nagai; Ichizo Nishino; Shinsuke Shibata; Hirohide Takebayashi
Journal:  Elife       Date:  2022-08-09       Impact factor: 8.713

5.  GAS2-like proteins mediate communication between microtubules and actin through interactions with end-binding proteins.

Authors:  Matthew J Stroud; Alicja Nazgiewicz; Edward A McKenzie; Yisu Wang; Richard A Kammerer; Christoph Ballestrem
Journal:  J Cell Sci       Date:  2014-04-04       Impact factor: 5.285

6.  BPAG1a and b associate with EB1 and EB3 and modulate vesicular transport, Golgi apparatus structure, and cell migration in C2.7 myoblasts.

Authors:  Kseniia Poliakova; Adijat Adebola; Conrad L Leung; Bertrand Favre; Ronald K H Liem; Isabelle Schepens; Luca Borradori
Journal:  PLoS One       Date:  2014-09-22       Impact factor: 3.240

7.  HSAN-VI: A spectrum disorder based on dystonin isoform expression.

Authors:  Anisha Lynch-Godrei; Rashmi Kothary
Journal:  Neurol Genet       Date:  2020-01-02

8.  Diverse dystonin gene mutations cause distinct patterns of Dst isoform deficiency and phenotypic heterogeneity in Dystonia musculorum mice.

Authors:  Nozomu Yoshioka; Yudai Kabata; Momona Kuriyama; Norihisa Bizen; Li Zhou; Dang M Tran; Masato Yano; Atsushi Yoshiki; Tatsuo Ushiki; Thomas J Sproule; Riichiro Abe; Hirohide Takebayashi
Journal:  Dis Model Mech       Date:  2020-05-21       Impact factor: 5.758

  8 in total

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