Actin Polymerization Defects Induce Mitochondrial Dysfunction in Cellular Models of Nemaline Myopathies

Author:

Piñero-Pérez Rocío1,López-Cabrera Alejandra1,Álvarez-Córdoba Mónica1,Cilleros-Holgado Paula1,Talaverón-Rey Marta1,Suárez-Carrillo Alejandra1,Munuera-Cabeza Manuel1,Gómez-Fernández David1,Reche-López Diana1,Romero-González Ana1,Romero-Domínguez José Manuel1,de Pablos Rocío M.23,Sánchez-Alcázar José A.1ORCID

Affiliation:

1. Departamento de Fisiología, Anatomía y Biología Celular, Centro Andaluz de Biología del Desarrollo (CABD-CSIC-Universidad Pablo de Olavide), 41013 Sevilla, Spain

2. Departamento de Bioquímica y Biología Molecular, Facultad de Farmacia, Universidad de Sevilla, 41012 Sevilla, Spain

3. Instituto of Biomedicina de Sevilla (IBiS), Hospital Universitario Virgen del Rocío (HUVR)/CSIC/Universidad de Sevilla, 41012 Sevilla, Spain

Abstract

Nemaline myopathy (NM) is one of the most common forms of congenital myopathy and it is identified by the presence of “nemaline bodies” (rods) in muscle fibers by histopathological examination. The most common forms of NM are caused by mutations in the Actin Alpha 1 (ACTA1) and Nebulin (NEB) genes. Clinical features include hypotonia and muscle weakness. Unfortunately, there is no curative treatment and the pathogenetic mechanisms remain unclear. In this manuscript, we examined the pathophysiological alterations in NM using dermal fibroblasts derived from patients with mutations in ACTA1 and NEB genes. Patients’ fibroblasts were stained with rhodamine–phalloidin to analyze the polymerization of actin filaments by fluorescence microscopy. We found that patients’ fibroblasts showed incorrect actin filament polymerization compared to control fibroblasts. Actin filament polymerization defects were associated with mitochondrial dysfunction. Furthermore, we identified two mitochondrial-boosting compounds, linoleic acid (LA) and L-carnitine (LCAR), that improved the formation of actin filaments in mutant fibroblasts and corrected mitochondrial bioenergetics. Our results indicate that cellular models can be useful to study the pathophysiological mechanisms involved in NM and to find new potential therapies. Furthermore, targeting mitochondrial dysfunction with LA and LCAR can revert the pathological alterations in NM cellular models.

Funder

Instituto de Salud Carlos III

Fondo Europeo de Desarrollo Regional

Spanish Ministry of Education, Culture, and Sport

European Regional Development Fund

UPO-FEDER

Publisher

MDPI AG

Subject

Cell Biology,Clinical Biochemistry,Molecular Biology,Biochemistry,Physiology

Reference122 articles.

1. Approach to the diagnosis of congenital myopathies;North;Neuromuscul. Disord. NMD,2014

2. Nemaline Myopathy. A New Congenital Myopathy;Shy;Brain,1963

3. Clinical and genetic heterogeneity in nemaline myopathy—A disease of skeletal muscle thin filaments;Sanoudou;Trends Mol. Med.,2001

4. 51st ENMC International Workshop: Nemaline Myopathy. 13-15 June 1997, Naarden, The Netherlands;Beggs;Neuromuscul. Disord. NMD,1998

5. Nemaline myopathy: A clinical study of 143 cases;Ryan;Ann. Neurol.,2001

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