Palmitoylation is one of the most important protein translational modifications and plays vital roles in many key biological processes. Aberrant palmitoylation has been associated with a variety of human diseases. So it is of great significance to profile the palmitoylated proteomes qualitatively and quantitatively. Here, we described a novel method based on the cysteine-stable isotope labeling in cell culture (cysteine-SILAC) to facilitate the quantitation of palmitoylated proteins by mass spectrometry (MS), in which “light” or “heavy” samples could be pooled and subjected to the subsequent analysis procedures simultaneously, minimizing systematic errors caused by parallel operations and improving quantitative accuracy and precision. The m...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is an important regulat...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is increasingly recogni...
The complexity of cell and tissue proteomes presents one of the most significant technical challenge...
Palmitoylation is one of the most important protein translational modifications and plays vital role...
The dynamic S-palmitoylation regulates many intracellular events, including protein trafficking, anc...
The reversible thioester linkage of palmitic acid on cysteines is known as protein S-palmitoylation,...
Palmitoylation is a reversible post-translational modification used to inducibly compartmentalize pr...
Protein palmitoylation is a critical post-translational modification important for membrane compartm...
Direct detection and quantification of protein/peptide palmitoylation by mass spectrometry (MS) is a...
Protein S-palmitoylation is a reversible post-translational modification that regulates many key bio...
Palmitoylation is the thioester linkage of the fatty acid, palmitate (C16:0), to cysteine residues o...
<div><p>Palmitoylation involves the reversible posttranslational addition of palmitate to cysteines ...
Protein S-palmitoylation is a reversible post-translational modification that regulates many key bio...
Palmitoylation is a reversible post-translational protein modification in which palmitic acid is add...
Palmitoylation affects membrane partitioning, trafficking and activities of membrane proteins. Howev...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is an important regulat...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is increasingly recogni...
The complexity of cell and tissue proteomes presents one of the most significant technical challenge...
Palmitoylation is one of the most important protein translational modifications and plays vital role...
The dynamic S-palmitoylation regulates many intracellular events, including protein trafficking, anc...
The reversible thioester linkage of palmitic acid on cysteines is known as protein S-palmitoylation,...
Palmitoylation is a reversible post-translational modification used to inducibly compartmentalize pr...
Protein palmitoylation is a critical post-translational modification important for membrane compartm...
Direct detection and quantification of protein/peptide palmitoylation by mass spectrometry (MS) is a...
Protein S-palmitoylation is a reversible post-translational modification that regulates many key bio...
Palmitoylation is the thioester linkage of the fatty acid, palmitate (C16:0), to cysteine residues o...
<div><p>Palmitoylation involves the reversible posttranslational addition of palmitate to cysteines ...
Protein S-palmitoylation is a reversible post-translational modification that regulates many key bio...
Palmitoylation is a reversible post-translational protein modification in which palmitic acid is add...
Palmitoylation affects membrane partitioning, trafficking and activities of membrane proteins. Howev...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is an important regulat...
Protein S-acylation (palmitoylation) is a reversible lipid modification that is increasingly recogni...
The complexity of cell and tissue proteomes presents one of the most significant technical challenge...