Literature DB >> 9716403

A calcineurin-dependent transcriptional pathway controls skeletal muscle fiber type.

E R Chin1, E N Olson, J A Richardson, Q Yang, C Humphries, J M Shelton, H Wu, W Zhu, R Bassel-Duby, R S Williams.   

Abstract

Slow- and fast-twitch myofibers of adult skeletal muscles express unique sets of muscle-specific genes, and these distinctive programs of gene expression are controlled by variations in motor neuron activity. It is well established that, as a consequence of more frequent neural stimulation, slow fibers maintain higher levels of intracellular free calcium than fast fibers, but the mechanisms by which calcium may function as a messenger linking nerve activity to changes in gene expression in skeletal muscle have been unknown. Here, fiber-type-specific gene expression in skeletal muscles is shown to be controlled by a signaling pathway that involves calcineurin, a cyclosporin-sensitive, calcium-regulated serine/threonine phosphatase. Activation of calcineurin in skeletal myocytes selectively up-regulates slow-fiber-specific gene promoters. Conversely, inhibition of calcineurin activity by administration of cyclosporin A to intact animals promotes slow-to-fast fiber transformation. Transcriptional activation of slow-fiber-specific transcription appears to be mediated by a combinatorial mechanism involving proteins of the NFAT and MEF2 families. These results identify a molecular mechanism by which different patterns of motor nerve activity promote selective changes in gene expression to establish the specialized characteristics of slow and fast myofibers.

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Year:  1998        PMID: 9716403      PMCID: PMC317085          DOI: 10.1101/gad.12.16.2499

Source DB:  PubMed          Journal:  Genes Dev        ISSN: 0890-9369            Impact factor:   11.361


  55 in total

Review 1.  Adaptation of mammalian skeletal muscle fibers to chronic electrical stimulation.

Authors:  D Pette; G Vrbová
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Authors:  A Rao; C Luo; P G Hogan
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Review 5.  Mechanisms of formation of muscle fiber types.

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Authors:  R S Williams; S Salmons; E A Newsholme; R E Kaufman; J Mellor
Journal:  J Biol Chem       Date:  1986-01-05       Impact factor: 5.157

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Authors:  V J Caiozzo; M J Baker; R E Herrick; M Tao; K M Baldwin
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Review 8.  Adaptations of skeletal muscle to endurance exercise and their metabolic consequences.

Authors:  J O Holloszy; E F Coyle
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