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Nebulin plays a direct role in promoting strong actin-myosin interactions.

Academic Article
Publication Date:
2009
abstract:
The role of the actin filament-associated protein nebulin on mechanical and kinetic properties of the actomyosin motor was investigated in skeletal muscle of wild-type (wt) and nebulin-deficient (nebulin(-)(/)(-)) mice that were 1 d old, an age at which sarcomeric structure is still well preserved. In Ca2+-activated skinned fibers from psoas muscle, we determined the Ca2+ dependence of isometric force and stiffness, the rate of force redevelopment after unloaded shortening (k(TR)), the power during isotonic shortening, and the unloaded shortening velocity (V(0)). Our results show a 65% reduction in isometric force in nebulin(-)(/)(-) fibers at saturating [Ca2+], whereas neither thin-filament length nor the Ca2+ sensitivity of the contractile system is affected. Stiffness measurements indicate that the reduction in isometric force is due to a reduction in the number of actin-attached myosin motors, whereas the force of the motor is unchanged. Furthermore, in nebulin(-)(/)(-) fibers, k(TR) is decreased by 57%, V(0) is increased by 63%, and the maximum power is decreased by 80%. These results indicate that, in the absence of nebulin, the attachment probability of the myosin motors to actin is decreased, revealing a direct role for nebulin in promoting strong actomyosin interactions responsible for force and power production.
Iris type:
01.01 Articolo in rivista
Keywords:
skeletal muscle; nemaline myopathy; sarcomere; nebulin
List of contributors:
Bang, MARIE LOUISE
Authors of the University:
BANG MARIE LOUISE
Handle:
https://iris.cnr.it/handle/20.500.14243/258885
Published in:
THE FASEB JOURNAL
Journal
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URL

http://www.fasebj.org/content/23/12/4117.long
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