Biological organisms represent highly dynamic systems, which are continually exposed to environmental factors and always strive to restore steady-state homeostasis. Posttranslational modifications are key regulators with which biological systems respond to external stimuli. To understand how homeostasis is restored, it is important to study the kinetics of posttranslational modifications. In this review we discuss proteomic approaches using stable isotope labeled metabolic precursors to study dynamics of posttranslational modifications in cell culture
Recent advances in mass spectrometry have enabled proteome-wide analyses of cellular protein turnove...
In the biological sciences, model organisms have been used for many decades and have enabled the gat...
Recently produced information on post-translational modifications makes it possible to interpret the...
Biological organisms represent highly dynamic systems, which are continually exposed to environmenta...
Living cells continuously degrade and resynthesize their constituent proteins. The maintenance of pr...
Post-translational modifications (PTMs) regulate various aspects of protein function, including degr...
While several techniques exist for assessing quantitative differences among proteomes representing d...
Proteins are the effector molecules of many cellular and biological processes and are thus very dyna...
The cell’s fate is largely governed by the dynamics of cellular events, brought about by the interpl...
Signal transduction pathways control cell fate, survival and function. They are organized as intrica...
Thesis (Ph. D.)--University of Rochester. Department of Biology, 2017.Living cells continuously degr...
The importance of post-translational modifications (PTMs) of proteins has become evident in the prot...
Recent advances in mass spectrometry (MS)-based proteomics allow the identification and quantitation...
ABSTRACT: Post-translational modifications (PTMs) (e.g., acetylation, methylation, and phosphorylati...
Recent advances in mass spectrometry (MS)-based proteomics allow the identification and quantitation...
Recent advances in mass spectrometry have enabled proteome-wide analyses of cellular protein turnove...
In the biological sciences, model organisms have been used for many decades and have enabled the gat...
Recently produced information on post-translational modifications makes it possible to interpret the...
Biological organisms represent highly dynamic systems, which are continually exposed to environmenta...
Living cells continuously degrade and resynthesize their constituent proteins. The maintenance of pr...
Post-translational modifications (PTMs) regulate various aspects of protein function, including degr...
While several techniques exist for assessing quantitative differences among proteomes representing d...
Proteins are the effector molecules of many cellular and biological processes and are thus very dyna...
The cell’s fate is largely governed by the dynamics of cellular events, brought about by the interpl...
Signal transduction pathways control cell fate, survival and function. They are organized as intrica...
Thesis (Ph. D.)--University of Rochester. Department of Biology, 2017.Living cells continuously degr...
The importance of post-translational modifications (PTMs) of proteins has become evident in the prot...
Recent advances in mass spectrometry (MS)-based proteomics allow the identification and quantitation...
ABSTRACT: Post-translational modifications (PTMs) (e.g., acetylation, methylation, and phosphorylati...
Recent advances in mass spectrometry (MS)-based proteomics allow the identification and quantitation...
Recent advances in mass spectrometry have enabled proteome-wide analyses of cellular protein turnove...
In the biological sciences, model organisms have been used for many decades and have enabled the gat...
Recently produced information on post-translational modifications makes it possible to interpret the...