Literature DB >> 29982604

Dystonin-A3 upregulation is responsible for maintenance of tubulin acetylation in a less severe dystonia musculorum mouse model for hereditary sensory and autonomic neuropathy type VI.

Anisha Lynch-Godrei1,2, Yves De Repentigny1, Sabrina Gagnon1, My Tran Trung1, Rashmi Kothary1,2,3,4.   

Abstract

Hereditary sensory and autonomic neuropathy type VI (HSAN-VI) is a recessive human disease that arises from mutations in the dystonin gene (DST; also known as Bullous pemphigoid antigen 1 gene). A milder form of HSAN-VI was recently described, resulting from loss of a single dystonin isoform (DST-A2). Similarly, mutations in the mouse dystonin gene (Dst) result in severe sensory neuropathy, dystonia musculorum (Dstdt). Two Dstdt alleles, Dstdt-Tg4 and Dstdt-27J, differ in the severity of disease. The less severe Dstdt-Tg4 mice have disrupted expression of Dst-A1 and -A2 isoforms, while the more severe Dstdt-27J allele affects Dst-A1, -A2 and -A3 isoforms. As dystonin is a cytoskeletal-linker protein, we evaluated microtubule network integrity within sensory neurons from Dstdt-Tg4 and Dstdt-27J mice. There is a significant reduction in tubulin acetylation in Dstdt-27J indicative of microtubule instability and severe microtubule disorganization within sensory axons. However, Dstdt-Tg4 mice have no change in tubulin acetylation, and microtubule organization was only mildly impaired. Thus, microtubule instability is not central to initiation of Dstdt pathogenesis, though it may contribute to disease severity. Maintenance of microtubule stability in Dstdt-Tg4 dorsal root ganglia could be attributed to an upregulation in Dst-A3 expression as a compensation for the absence of Dst-A1 and -A2 in Dstdt-Tg4 sensory neurons. Indeed, knockdown of Dst-A3 in these neurons resulted in a decrease in tubulin acetylation. These findings shed light on the possible compensatory role of dystonin isoforms within HSAN-VI, which might explain the heterogeneity in symptoms within the reported forms of the disease.

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Year:  2018        PMID: 29982604     DOI: 10.1093/hmg/ddy250

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


  3 in total

Review 1.  Myocardial ischaemia reperfusion injury and cardioprotection in the presence of sensory neuropathy: Therapeutic options.

Authors:  Péter Bencsik; Kamilla Gömöri; Tamara Szabados; Péter Sántha; Zsuzsanna Helyes; Gábor Jancsó; Péter Ferdinandy; Anikó Görbe
Journal:  Br J Pharmacol       Date:  2020-03-21       Impact factor: 8.739

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

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

3.  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

  3 in total

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