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Nebulin regulates thin filament length, contractility, and Z-disk structure in vivo.

Authors :
Witt, Christian C.
Burkart, Christoph
Labeit, Dietmar
McNabb, Mark
Yiming Wu
Granzier, Henk
Labeit, Siegfried
Source :
EMBO Journal. 8/23/2006, Vol. 25 Issue 16, p3843-3855. 13p. 1 Diagram, 8 Graphs.
Publication Year :
2006

Abstract

The precise assembly of the highly organized filament systems found in muscle is critically important for its function. It has been hypothesized that nebulin, a giant filamentous protein extending along the entire length of the thin filament, provides a blueprint for muscle thin filament assembly. To test this hypothesis, we generated a KO mouse model to investigate nebulin functions in vivo. Nebulin KO mice assemble thin filaments of reduced lengths and ∼15% of their Z-disks are abnormally wide. Our data demonstrate that nebulin functions in vivo as a molecular ruler by specifying pointed- and barbed-end thin filament capping. Consistent with the shorter thin filament length of nebulin deficient mice, maximal active tension was significantly reduced in KO animals. Phenotypically, the murine model recapitulates human nemaline myopathy (NM), that is, the formation of nemaline rods combined with severe skeletal muscle weakness. The myopathic changes in the nebulin KO model include depressed contractility, loss of myopalladin from the Z-disk, and dysregulation of genes involved in calcium homeostasis and glycogen metabolism; features potentially relevant for understanding human NM. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02614189
Volume :
25
Issue :
16
Database :
Academic Search Index
Journal :
EMBO Journal
Publication Type :
Academic Journal
Accession number :
22111687
Full Text :
https://doi.org/10.1038/sj.emboj.7601242