Literature DB >> 33234710

Impaired muscle morphology in a Drosophila model of myosin storage myopathy was supressed by overexpression of an E3 ubiquitin ligase.

Martin Dahl-Halvarsson1, Montse Olive2, Malgorzata Pokrzywa1, Michaela Norum1, Katarina Ejeskär3, Homa Tajsharghi4.   

Abstract

Myosin is vital for body movement and heart contractility. Mutations in MYH7, encoding slow/β-cardiac myosin heavy chain, are an important cause of hypertrophic and dilated cardiomyopathy, as well as skeletal muscle disease. A dominant missense mutation (R1845W) in MYH7 has been reported in several unrelated cases of myosin storage myopathy. We have developed a Drosophila model for a myosin storage myopathy in order to investigate the dose-dependent mechanisms underlying the pathological roles of the R1845W mutation. This study shows that a higher expression level of the mutated allele is concomitant with severe impairment of muscle function and progressively disrupted muscle morphology. The impaired muscle morphology associated with the mutant allele was suppressed by expression of Thin (herein referred to as Abba), an E3 ubiquitin ligase. This Drosophila model recapitulates pathological features seen in myopathy patients with the R1845W mutation and severe ultrastructural abnormalities, including extensive loss of thick filaments with selective A-band loss, and preservation of I-band and Z-disks were observed in indirect flight muscles of flies with exclusive expression of mutant myosin. Furthermore, the impaired muscle morphology associated with the mutant allele was suppressed by expression of Abba. These findings suggest that modification of the ubiquitin proteasome system may be beneficial in myosin storage myopathy by reducing the impact of MYH7 mutation in patients.
© 2020. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  Drosophila model; E3 ubiquitin ligase; MYH7; Myosin storage myopathy; Potential therapeutic approach; Slow/β-cardiac myosin heavy chain; Ubiquitin proteasome system

Year:  2020        PMID: 33234710      PMCID: PMC7790189          DOI: 10.1242/dmm.047886

Source DB:  PubMed          Journal:  Dis Model Mech        ISSN: 1754-8403            Impact factor:   5.758


  45 in total

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Journal:  Nucleic Acids Res       Date:  1989-08-11       Impact factor: 16.971

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Journal:  Fortschr Neurol Psychiatr       Date:  2010-04-07       Impact factor: 0.752

6.  Ultrastructural and molecular analyses of homozygous-viable Drosophila melanogaster muscle mutants indicate there is a complex pattern of myosin heavy-chain isoform distribution.

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Journal:  Genes Dev       Date:  1989-08       Impact factor: 11.361

7.  Hyaline bodies in skeletal muscle of a patient with a mild chronic nonprogressive congenital myopathy.

Authors:  C Ceuterick; J J Martin; C Martens
Journal:  Clin Neuropathol       Date:  1993 Mar-Apr       Impact factor: 1.368

8.  Mutations in the beta-myosin rod cause myosin storage myopathy via multiple mechanisms.

Authors:  Thomas Z Armel; Leslie A Leinwand
Journal:  Proc Natl Acad Sci U S A       Date:  2009-03-31       Impact factor: 11.205

9.  Expression of the inclusion body myopathy 3 mutation in Drosophila depresses myosin function and stability and recapitulates muscle inclusions and weakness.

Authors:  Yang Wang; Girish C Melkani; Jennifer A Suggs; Anju Melkani; William A Kronert; Anthony Cammarato; Sanford I Bernstein
Journal:  Mol Biol Cell       Date:  2012-04-11       Impact factor: 4.138

Review 10.  Myosinopathies: pathology and mechanisms.

Authors:  Homa Tajsharghi; Anders Oldfors
Journal:  Acta Neuropathol       Date:  2012-08-05       Impact factor: 17.088

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