Skeletal muscle, the most abundant body tissue, plays vital roles in locomotion and metabolism. Myostatin is a negative regulator of skeletal muscle mass. In addition to increasing muscle mass, Myostatin inhibition impacts muscle contractility and energy metabolism. To decipher the mechanisms of action of the Myostatin inhibitors, we used proteomic and transcriptomic approaches to investigate the changes induced in skeletal muscles of transgenic mice overexpressing Follistatin, a physiological Myostatin inhibitor. Our proteomic workflow included a fractionation step to identify weakly expressed proteins and a comparison of fast versus slow muscles. Functional annotation of altered proteins supports the phenotypic changes induced by Myostati...
Levels of myostatin expression and physical activity have both been associated with transcriptome dy...
<div><p>Levels of myostatin expression and physical activity have both been associated with transcri...
Myostatin is a novel negative regulator of skeletal muscle mass. Myostatin expression is also found ...
Skeletal muscle, the most abundant body tissue, plays vital roles in locomotion and metabolism. Myos...
Skeletal muscle, the most abundant body tissue, plays vital roles in locomotion and metabolism. Myos...
Follistatin has been shown to induce a marked increase in muscle mass. In addition, it impacts on mu...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
Skeletal muscle provides an organism with a means of reacting to its environments. It is a complex a...
Myostatin, a member of the transforming growth factor-β superfamily, is a potent negative regulator ...
Myostatin is a secreted protein which is known to be a negative regulator of skeletal muscle growth....
Myostatin is a transforming growth factor-beta family member that normally acts to limit skeletal mu...
Myostatin plays a major role in muscle growth and development and animals with disruption of this ge...
Follistatin (FS) inhibits several members of the TGF-β superfamily, including myostatin (Mstn), a ne...
Myostatin is a negative regulator of muscle growth. When it is not present or non-functional double-...
Levels of myostatin expression and physical activity have both been associated with transcriptome dy...
<div><p>Levels of myostatin expression and physical activity have both been associated with transcri...
Myostatin is a novel negative regulator of skeletal muscle mass. Myostatin expression is also found ...
Skeletal muscle, the most abundant body tissue, plays vital roles in locomotion and metabolism. Myos...
Skeletal muscle, the most abundant body tissue, plays vital roles in locomotion and metabolism. Myos...
Follistatin has been shown to induce a marked increase in muscle mass. In addition, it impacts on mu...
Increasing size and strength of skeletal muscle represents a promising therapeutic strategy for musc...
International audienceMyostatin is a member of the TGF beta family which plays a major role in negat...
Skeletal muscle provides an organism with a means of reacting to its environments. It is a complex a...
Myostatin, a member of the transforming growth factor-β superfamily, is a potent negative regulator ...
Myostatin is a secreted protein which is known to be a negative regulator of skeletal muscle growth....
Myostatin is a transforming growth factor-beta family member that normally acts to limit skeletal mu...
Myostatin plays a major role in muscle growth and development and animals with disruption of this ge...
Follistatin (FS) inhibits several members of the TGF-β superfamily, including myostatin (Mstn), a ne...
Myostatin is a negative regulator of muscle growth. When it is not present or non-functional double-...
Levels of myostatin expression and physical activity have both been associated with transcriptome dy...
<div><p>Levels of myostatin expression and physical activity have both been associated with transcri...
Myostatin is a novel negative regulator of skeletal muscle mass. Myostatin expression is also found ...