Protein degradation by the ubiquitin (Ub) system controls the concentrations of many regulatory proteins. The degradation signals (degrons) of these proteins are recognized by the system's Ub ligases (complexes of E2 and E3 enzymes). Two substrate-binding sites of UBR1, the E3 of the Wend rule pathway in the yeast Saccharomyces cerevisiae, recognize basic (type 1) and bulky hydrophobic (type 2) N-terminal residues of proteins or short peptides. A third substrate-binding site of UBR1 targets CUP9, a transcriptional repressor of the peptide transporter PTR2, through an internal (non-N-terminal) degron of CUP9. Previous work demonstrated that dipeptides with destabilizing N-terminal residues allosterically activate UBR1, leading to accelerated...
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their de...
A subset of proteins targeted by the N-end rule pathway bear degradation signals called N-degrons, w...
Ubr1 and Ubr2 ubiquitin ligases are shown to promote degradation of misfolded cytosolic polypeptides...
Protein degradation by the ubiquitin system controls the intracellular concentrations of many regula...
Substrates of a ubiquitin-dependent proteolytic system called the N-end rule pathway include protein...
Substrates of the N-end rule pathway include proteins with destabilizing N-terminal residues. These ...
Multiple pathways link expression of PTR2, the transporter of di- and tripeptides in the yeast Sacch...
Substrates of a ubiquitin-dependent proteolytic system called the N-end rule pathway include protein...
Multiple pathways link expression of PTR2, the transporter of di- and tripeptides in the yeast Sacch...
Ubiquitin-dependent proteolytic systems underlie many processes, including the cell cycle, cell diff...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their de...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
AbstractThe Ubr1-like canonical N-recognins, widely conserved ubiquitin ligases in eukaryotes, play ...
The N-end rule relates the in vivo half-life of a protein to the identity of its amino-terminal resi...
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their de...
A subset of proteins targeted by the N-end rule pathway bear degradation signals called N-degrons, w...
Ubr1 and Ubr2 ubiquitin ligases are shown to promote degradation of misfolded cytosolic polypeptides...
Protein degradation by the ubiquitin system controls the intracellular concentrations of many regula...
Substrates of a ubiquitin-dependent proteolytic system called the N-end rule pathway include protein...
Substrates of the N-end rule pathway include proteins with destabilizing N-terminal residues. These ...
Multiple pathways link expression of PTR2, the transporter of di- and tripeptides in the yeast Sacch...
Substrates of a ubiquitin-dependent proteolytic system called the N-end rule pathway include protein...
Multiple pathways link expression of PTR2, the transporter of di- and tripeptides in the yeast Sacch...
Ubiquitin-dependent proteolytic systems underlie many processes, including the cell cycle, cell diff...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their de...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
AbstractThe Ubr1-like canonical N-recognins, widely conserved ubiquitin ligases in eukaryotes, play ...
The N-end rule relates the in vivo half-life of a protein to the identity of its amino-terminal resi...
Substrates of the N-end rule pathway are recognized by the Ubr1 E3 ubiquitin ligase through their de...
A subset of proteins targeted by the N-end rule pathway bear degradation signals called N-degrons, w...
Ubr1 and Ubr2 ubiquitin ligases are shown to promote degradation of misfolded cytosolic polypeptides...