Literature DB >> 15226407

Myopathy mutations in alpha-skeletal-muscle actin cause a range of molecular defects.

Céline F Costa1, Heidi Rommelaere, Davy Waterschoot, Kamaljit K Sethi, Kristen J Nowak, Nigel G Laing, Christophe Ampe, Laura M Machesky.   

Abstract

Mutations in the gene encoding alpha-skeletal-muscle actin, ACTA1, cause congenital myopathies of various phenotypes that have been studied since their discovery in 1999. Although much is now known about the clinical aspects of myopathies resulting from over 60 different ACTA1 mutations, we have very little evidence for how mutations alter the behavior of the actin protein and thus lead to disease. We used a combination of biochemical and cell biological analysis to classify 19 myopathy mutants and found a range of defects in the actin. Using in vitro expression systems, we probed actin folding and actin's capacity to interact with actin-binding proteins and polymerization. Only two mutants failed to fold; these represent recessive alleles, causing severe myopathy, indicating that patients produce nonfunctional actin. Four other mutants bound tightly to cyclase-associated protein, indicating a possible instability in the nucleotide-binding pocket, and formed rods and aggregates in cells. Eleven mutants showed defects in the ability to co-polymerize with wild-type actin. Some of these could incorporate into normal actin structures in NIH 3T3 fibroblasts, but two of the three tested also formed aggregates. Four mutants showed no defect in vitro but two of these formed aggregates in cells, indicating functional defects that we have not yet tested for. Overall, we found a range of defects and behaviors of the mutants in vitro and in cultured cells, paralleling the complexity of actin-based muscle myopathy phenotypes.

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Year:  2004        PMID: 15226407     DOI: 10.1242/jcs.01172

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  31 in total

1.  Functional characterization of the human α-cardiac actin mutations Y166C and M305L involved in hypertrophic cardiomyopathy.

Authors:  Mirco Müller; Antonina Joanna Mazur; Elmar Behrmann; Ralph P Diensthuber; Michael B Radke; Zheng Qu; Christoph Littwitz; Stefan Raunser; Cora-Ann Schoenenberger; Dietmar J Manstein; Hans Georg Mannherz
Journal:  Cell Mol Life Sci       Date:  2012-05-29       Impact factor: 9.261

Review 2.  Protein misfolding disorders: pathogenesis and intervention.

Authors:  N Gregersen
Journal:  J Inherit Metab Dis       Date:  2006 Apr-Jun       Impact factor: 4.982

3.  Association of a Novel ACTA1 Mutation With a Dominant Progressive Scapuloperoneal Myopathy in an Extended Family.

Authors:  Kristen Zukosky; Katherine Meilleur; Bryan J Traynor; Jahannaz Dastgir; Livija Medne; Marcella Devoto; James Collins; Jachinta Rooney; Yaqun Zou; Michele L Yang; J Raphael Gibbs; Markus Meier; Joerg Stetefeld; Richard S Finkel; Joachim Schessl; Lauren Elman; Kevin Felice; Toby A Ferguson; Ozge Ceyhan-Birsoy; Alan H Beggs; Gihan Tennekoon; Janel O Johnson; Carsten G Bönnemann
Journal:  JAMA Neurol       Date:  2015-06       Impact factor: 18.302

4.  Mutations and polymorphisms of the skeletal muscle alpha-actin gene (ACTA1).

Authors:  Nigel G Laing; Danielle E Dye; Carina Wallgren-Pettersson; Gabriele Richard; Nicole Monnier; Suzanne Lillis; Thomas L Winder; Hanns Lochmüller; Claudio Graziano; Stella Mitrani-Rosenbaum; Darren Twomey; John C Sparrow; Alan H Beggs; Kristen J Nowak
Journal:  Hum Mutat       Date:  2009-09       Impact factor: 4.878

5.  A mutation of beta -actin that alters depolymerization dynamics is associated with autosomal dominant developmental malformations, deafness, and dystonia.

Authors:  Vincent Procaccio; Gloria Salazar; Shoichiro Ono; Melanie L Styers; Marla Gearing; Antonio Davila; Richard Jimenez; Jorge Juncos; Claire-Anne Gutekunst; Germana Meroni; Bianca Fontanella; Estelle Sontag; Jean Marie Sontag; Victor Faundez; Bruce H Wainer
Journal:  Am J Hum Genet       Date:  2006-04-21       Impact factor: 11.025

6.  Actin-binding compounds, previously discovered by FRET-based high-throughput screening, differentially affect skeletal and cardiac muscle.

Authors:  Piyali Guhathakurta; Lien A Phung; Ewa Prochniewicz; Sarah Lichtenberger; Anna Wilson; David D Thomas
Journal:  J Biol Chem       Date:  2020-08-11       Impact factor: 5.157

Review 7.  Nuclear Actin: From Discovery to Function.

Authors:  Daniel J Kelpsch; Tina L Tootle
Journal:  Anat Rec (Hoboken)       Date:  2018-11-01       Impact factor: 2.064

8.  Myopathy-causing actin mutations promote defects in serum-response factor signalling.

Authors:  Balázs Visegrády; Laura M Machesky
Journal:  Biochem J       Date:  2010-03-15       Impact factor: 3.857

Review 9.  Dynamic regulation of sarcomeric actin filaments in striated muscle.

Authors:  Shoichiro Ono
Journal:  Cytoskeleton (Hoboken)       Date:  2010-11

10.  Phenotypes induced by NM causing alpha-skeletal muscle actin mutants in fibroblasts, Sol 8 myoblasts and myotubes.

Authors:  Drieke Vandamme; Ellen Lambert; Davy Waterschoot; Davina Tondeleir; Joël Vandekerckhove; Laura M Machesky; Bruno Constantin; Heidi Rommelaere; Christophe Ampe
Journal:  BMC Res Notes       Date:  2009-03-10
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