Tuning passive mechanics through differential splicing of titin during skeletal muscle development.
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ABSTRACT: During postnatal development, major changes in mechanical properties of skeletal muscle occur. We investigated passive properties of skeletal muscle in mice and rabbits that varied in age from 1 day to approximately 1 year. Neonatal skeletal muscle expressed large titin isoforms directly after birth, followed by a gradual switch toward progressively smaller isoforms that required weeks-to-months to be completed. This suggests an extremely high plasticity of titin splicing during skeletal muscle development. Titin exon microarray analysis showed increased expression of a large group of exons in neonatal muscle, when compared to adult muscle transcripts, with the majority of upregulated exons coding for the elastic proline-glutamate-valine-lysine (PEVK) region of titin. Protein analysis supp
SUBMITTER: Ottenheijm CA
PROVIDER: S-EPMC2764098 | biostudies-literature | 2009 Oct
REPOSITORIES: biostudies-literature
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