Palmitoylation of p63, a type II membrane protein localized in the endoplasmic reticulum, is induced in a reversible manner by the drug brefeldin A. To study the requirements for palmitoylation, mutant forms of p63 were expressed in COS cells and analyzed by metabolic labeling with [3H]palmitate, immunoprecipitation, and SDS-polyacrylamide gel electrophoresis. By investigating deletion and point mutations, Cys100 in the 106-amino acid cytoplasmic tail of p63 has been identified as the site of acylation. Site-directed mutagenesis of residues 99-105 together with cytoplasmic tail truncation mutants showed that the amino acids surrounding Cys100 are not critical for palmitoylation of this residue. Analysis of a chimeric construct between p63 a...
Palmitoylation affects membrane partitioning, trafficking and activities of membrane proteins. Howev...
AbstractProtein S-palmitoylation, the covalent lipid modification of the side chain of Cys residues ...
<p><i>A</i>, Schematic representation of MAP6d1 constructs. <i>B,</i> NIH/3T3 cells overexpressing M...
Palmitoylation of p63, a type II membrane protein localized in the endoplasmic reticulum, is induced...
Protein palmitoylation is a post-translation modification, which typically regulates the protein int...
Protein palmitoylation refers to the process of adding a 16-carbon saturated fatty acid to the cyste...
Palmitoylation describes the enzymatic attachment of a 16-carbon atom fatty acid to a target protein...
AbstractThe envelope protein of Friend murine leukemia virus is modified by fatty acylation of the t...
Mutations in the depalmitoylating enzyme gene, PPT1, cause the infantile form of Neuronal Ceroid Lip...
Reversible S-palmitoylation of cysteine residues critically controls transient membrane tethering of...
The recently identified 63 kDa membrane protein, p63, is a resident protein of a membrane network in...
SummaryReversible S-palmitoylation of cysteine residues critically controls transient membrane tethe...
Protein palmitoylation represents the only reversible lipid modification in the cell. As a post-tran...
Palmitoylation can regulate both the affinity for membranes and the biological activity of proteins....
S-palmitoylation is a posttranslational modification that regulates membrane–protein interactions. H...
Palmitoylation affects membrane partitioning, trafficking and activities of membrane proteins. Howev...
AbstractProtein S-palmitoylation, the covalent lipid modification of the side chain of Cys residues ...
<p><i>A</i>, Schematic representation of MAP6d1 constructs. <i>B,</i> NIH/3T3 cells overexpressing M...
Palmitoylation of p63, a type II membrane protein localized in the endoplasmic reticulum, is induced...
Protein palmitoylation is a post-translation modification, which typically regulates the protein int...
Protein palmitoylation refers to the process of adding a 16-carbon saturated fatty acid to the cyste...
Palmitoylation describes the enzymatic attachment of a 16-carbon atom fatty acid to a target protein...
AbstractThe envelope protein of Friend murine leukemia virus is modified by fatty acylation of the t...
Mutations in the depalmitoylating enzyme gene, PPT1, cause the infantile form of Neuronal Ceroid Lip...
Reversible S-palmitoylation of cysteine residues critically controls transient membrane tethering of...
The recently identified 63 kDa membrane protein, p63, is a resident protein of a membrane network in...
SummaryReversible S-palmitoylation of cysteine residues critically controls transient membrane tethe...
Protein palmitoylation represents the only reversible lipid modification in the cell. As a post-tran...
Palmitoylation can regulate both the affinity for membranes and the biological activity of proteins....
S-palmitoylation is a posttranslational modification that regulates membrane–protein interactions. H...
Palmitoylation affects membrane partitioning, trafficking and activities of membrane proteins. Howev...
AbstractProtein S-palmitoylation, the covalent lipid modification of the side chain of Cys residues ...
<p><i>A</i>, Schematic representation of MAP6d1 constructs. <i>B,</i> NIH/3T3 cells overexpressing M...