We have used two-dimensional gel electrophoresis (2-DE) and mass spectrometry (MS) to study the expression of contractile and regulatory proteins in human vastus lateralis and deltoideus muscles, in order to understand protein turnover and isoform switching in muscles with the same fiber-type composition but different functional properties. We demonstrate a two- to six-fold overexpression of enzymes associated with glycolysis, the tricarboxylic acid cycle, oxidative phosphorylation, and substrate transport in vastus lateralis compared to deltoideus. Expression levels of contractile protein isoforms correlated to the proportion of slow-twitch fibers in deltoideus compared to vastus lateralis are consistent with the different contracti...
Contractile and energetic properties of human skeletal muscle have been studied for many years in vi...
Skeletal muscle plays a major role in whole body protein metabolism, and changes in the rates of syn...
Slow and fast skeletal muscles are composed of, respectively, mainly oxidative and glycolytic muscle...
We have used two-dimensional gel electrophoresis (2-DE) and mass spectrometry (MS) to study the expr...
Protein samples of human vastus lateralis muscle were analyzed by two-dimensional gel electrophoresi...
The pioneering work by Patrick H. O’Farrell established two-dimensional gel electrophoresis as one o...
Background: The trapezius muscle is a neck muscle that is susceptible to chronic pain conditions ass...
Functional characterization of muscle fibers relies on ATPase activity and on differential measureme...
Proteins from bioptates and autoptates of human skeletal muscle m. vastus lateralis were separated b...
In basic and applied myology, gel-based proteomics is routinely used for studying global changes in ...
In this article, we illustrate the application of difference in-gel electrophoresis for the proteomi...
The mass spectrometric analysis of skeletal muscle proteins has used both peptide-centric and prote...
Slow and fast skeletal muscles are composed of, respectively, mainly oxidative and glycolytic muscle...
Fiber-type distribution is known to vary widely within and between muscles according to differences ...
In this article, we illustrate the application of difference in-gel electrophoresis for the proteom...
Contractile and energetic properties of human skeletal muscle have been studied for many years in vi...
Skeletal muscle plays a major role in whole body protein metabolism, and changes in the rates of syn...
Slow and fast skeletal muscles are composed of, respectively, mainly oxidative and glycolytic muscle...
We have used two-dimensional gel electrophoresis (2-DE) and mass spectrometry (MS) to study the expr...
Protein samples of human vastus lateralis muscle were analyzed by two-dimensional gel electrophoresi...
The pioneering work by Patrick H. O’Farrell established two-dimensional gel electrophoresis as one o...
Background: The trapezius muscle is a neck muscle that is susceptible to chronic pain conditions ass...
Functional characterization of muscle fibers relies on ATPase activity and on differential measureme...
Proteins from bioptates and autoptates of human skeletal muscle m. vastus lateralis were separated b...
In basic and applied myology, gel-based proteomics is routinely used for studying global changes in ...
In this article, we illustrate the application of difference in-gel electrophoresis for the proteomi...
The mass spectrometric analysis of skeletal muscle proteins has used both peptide-centric and prote...
Slow and fast skeletal muscles are composed of, respectively, mainly oxidative and glycolytic muscle...
Fiber-type distribution is known to vary widely within and between muscles according to differences ...
In this article, we illustrate the application of difference in-gel electrophoresis for the proteom...
Contractile and energetic properties of human skeletal muscle have been studied for many years in vi...
Skeletal muscle plays a major role in whole body protein metabolism, and changes in the rates of syn...
Slow and fast skeletal muscles are composed of, respectively, mainly oxidative and glycolytic muscle...