Troponin activator augments muscle force in nemaline myopathy patients with nebulin mutations.
J Med Genet
; 50(6): 383-92, 2013 Jun.
Article
em En
| MEDLINE
| ID: mdl-23572184
BACKGROUND: Nemaline myopathy-the most common non-dystrophic congenital myopathy-is caused by mutations in thin filament genes, of which the nebulin gene is the most frequently affected one. The nebulin gene codes for the giant sarcomeric protein nebulin, which plays a crucial role in skeletal muscle contractile performance. Muscle weakness is a hallmark feature of nemaline myopathy patients with nebulin mutations, and is caused by changes in contractile protein function, including a lower calcium-sensitivity of force generation. To date no therapy exists to treat muscle weakness in nemaline myopathy. Here, we studied the ability of the novel fast skeletal muscle troponin activator, CK-2066260, to augment force generation at submaximal calcium levels in muscle cells from nemaline myopathy patients with nebulin mutations. METHODS: Contractile protein function was determined in permeabilised muscle cells isolated from frozen patient biopsies. The effect of 5 µM CK-2066260 on force production was assessed. RESULTS: Nebulin protein concentrations were severely reduced in muscle cells from these patients compared to controls, while myofibrillar ultrastructure was largely preserved. Both maximal active tension and the calcium-sensitivity of force generation were lower in patients compared to controls. Importantly, CK-2066260 greatly increased the calcium-sensitivity of force generation-without affecting the cooperativity of activation-in patients to levels that exceed those observed in untreated control muscle. CONCLUSIONS: Fast skeletal troponin activation is a therapeutic mechanism to augment contractile protein function in nemaline myopathy patients with nebulin mutations and with other neuromuscular diseases.
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Texto completo:
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Base de dados:
MEDLINE
Assunto principal:
Pirazinas
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Troponina
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Miopatias da Nemalina
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Força Muscular
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Imidazóis
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Proteínas Musculares
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Mutação
Limite:
Adult
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Child, preschool
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Humans
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Infant
Idioma:
En
Revista:
J Med Genet
Ano de publicação:
2013
Tipo de documento:
Article
País de afiliação:
Holanda