The activity and abundance of proteins within a cell are controlled precisely to ensure the regulation of cellular and physiological processes. In eukaryotes, this can be achieved by targeting specific proteins for degradation by the ubiquitinproteasome system. The N-end rule pathway, a subset of the ubiquitinproteasome system, targets proteins for degradation depending on the identity of a protein N-terminal residue or its post-translational modifications. Here, we discuss the most recent findings on the diversity of N-end rule pathways. We also focus on recently found defensive functions of the N-end rule pathway in plants. We then discuss the current understanding of N-end rule substrate formation by protease cleavage. Finally, ...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
The N-end rule pathway of targeted protein degradation is an important regulator of diverse processe...
The activity and abundance of proteins within a cell are controlled precisely to ensure the regulat...
The N-end rule pathway is a protein degradation pathway that relates the stability of a protein to t...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal amino ac...
The control of intracellular protein homeostasis is essential for the ability of plants to grow und...
The N-end rule links the identity of the N-terminal amino acid of a protein to its in vivo half life...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
AbstractIntracellular proteolysis is a tightly regulated process responsible for the targeted remova...
The N-end rule pathway is a highly conserved process that operates in many different organisms. It r...
The N-end rule relates the regulation of the in vivo half-life of a protein to the identity of its N...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
AbstractProteinase yscE, the proteasome/multicatalytic—multifunctional proteinase of yeast had been ...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
The N-end rule pathway of targeted protein degradation is an important regulator of diverse processe...
The activity and abundance of proteins within a cell are controlled precisely to ensure the regulat...
The N-end rule pathway is a protein degradation pathway that relates the stability of a protein to t...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal amino ac...
The control of intracellular protein homeostasis is essential for the ability of plants to grow und...
The N-end rule links the identity of the N-terminal amino acid of a protein to its in vivo half life...
The N-end rule relates the in vivo half-life of a protein to the identity of its N-terminal residue....
AbstractIntracellular proteolysis is a tightly regulated process responsible for the targeted remova...
The N-end rule pathway is a highly conserved process that operates in many different organisms. It r...
The N-end rule relates the regulation of the in vivo half-life of a protein to the identity of its N...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
The amino- (N-) terminus (Nt) of a protein can undergo a diverse array of co- and posttranslational ...
AbstractProteinase yscE, the proteasome/multicatalytic—multifunctional proteinase of yeast had been ...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
Eukaryotes contain a highly conserved multienzyme system which covalently links a small protein, ubi...
The N-end rule pathway of targeted protein degradation is an important regulator of diverse processe...