AIM: Notwithstanding the widely accepted idea that following disuse skeletal muscles become faster, an increase in shortening velocity was previously observed mostly in fibres containing type 1 myosin, whereas a decrease was generally found in fibres containing type 2B myosin. In this study, unloaded shortening velocity of pure type 1 and 2B fibres from hindlimb unloaded mice was determined and a decrease in type 2B fibres was found. METHODS: To clarify whether the decrease in shortening velocity could depend on alterations of myosin motor function, an in vitro motility assay approach was applied to study pure type 1 and pure type 2B myosin from hindlimb unloaded mice. The latter approach, assessing actin sliding velocity on isolated...
We examined the movement of an actin filament sliding on a mixture of normal and genetically modifie...
Disuse induces adaptations in skeletal muscle, which lead to muscle deterioration. Hindlimb-unloadin...
The speed of muscle contraction is related to body size; muscles in larger species contract at slowe...
AIM: Notwithstanding the widely accepted idea that following disuse skeletal muscles become faste...
Aim: Notwithstanding the widely accepted idea that following disuse skeletal muscles become faster, ...
Disuse muscle atrophy following hindlimb unloading (HU) can cause changes in unloaded shortening ve...
Duchenne muscular dystrophy (DMD) is a genetic disease characterized by skeletal muscle wasting and ...
Maximum shortening velocity (V0) was determined in single fibres dissected from hind limb skeletal m...
It has been observed that heavy meromyosin (HMM) propels actin filaments to higher velocities than n...
In rat skeletal muscle the unloaded shortening velocity (Vo) is defined by the myosin isoform expres...
AbstractSkeletal muscle’s ability to shorten and lengthen against a load is a fundamental property, ...
To understand mammalian skeletal myosin isoform diversity, pure myosin isoforms of the four major sk...
The aims of this study were to develop a single skeletal muscle fiber in vitro motility assay, and t...
An in vitro motility assay approach was used to understand the mechanisms of the functional differen...
Disuse induces adaptations in skeletal muscle, which lead to muscle deterioration. Hindlimb-unloadin...
We examined the movement of an actin filament sliding on a mixture of normal and genetically modifie...
Disuse induces adaptations in skeletal muscle, which lead to muscle deterioration. Hindlimb-unloadin...
The speed of muscle contraction is related to body size; muscles in larger species contract at slowe...
AIM: Notwithstanding the widely accepted idea that following disuse skeletal muscles become faste...
Aim: Notwithstanding the widely accepted idea that following disuse skeletal muscles become faster, ...
Disuse muscle atrophy following hindlimb unloading (HU) can cause changes in unloaded shortening ve...
Duchenne muscular dystrophy (DMD) is a genetic disease characterized by skeletal muscle wasting and ...
Maximum shortening velocity (V0) was determined in single fibres dissected from hind limb skeletal m...
It has been observed that heavy meromyosin (HMM) propels actin filaments to higher velocities than n...
In rat skeletal muscle the unloaded shortening velocity (Vo) is defined by the myosin isoform expres...
AbstractSkeletal muscle’s ability to shorten and lengthen against a load is a fundamental property, ...
To understand mammalian skeletal myosin isoform diversity, pure myosin isoforms of the four major sk...
The aims of this study were to develop a single skeletal muscle fiber in vitro motility assay, and t...
An in vitro motility assay approach was used to understand the mechanisms of the functional differen...
Disuse induces adaptations in skeletal muscle, which lead to muscle deterioration. Hindlimb-unloadin...
We examined the movement of an actin filament sliding on a mixture of normal and genetically modifie...
Disuse induces adaptations in skeletal muscle, which lead to muscle deterioration. Hindlimb-unloadin...
The speed of muscle contraction is related to body size; muscles in larger species contract at slowe...