WWP2: Difference between revisions

From Proteopedia
Jump to navigationJump to search
No edit summary
No edit summary
Line 13: Line 13:
The HECT domain is divided into two lobes (labeled N and C). The N-lobe serves as a binding site for the E2-ubiquitin complex and includes an exosite for non-covalent ubiquitin binding relevant to autoinhibition while the C-lobe contains an active site with a catalytic Cys residue to which the substrate ubiquitin molecule can covalently attach. The <scene name='84/848928/Hinge_zoomed/7'>hinge</scene> (magenta) connects the N and C lobes of the HECT domain and allows for flexible movement of the lobes as ubiquitin is transferred from the E2-ubiquitin complex docked on the N-lobe to the ubiquitin binding site in the C-lobe. A transthiolation reaction in this active site results in a thioester bond between the ubiquitin and a Cys residue. The HECT domain is in an inverse T shape when inactive (autoinhibited) and takes on an L shape when active. WW2 interaction with HECT is mediated by the six C terminal residues.
The HECT domain is divided into two lobes (labeled N and C). The N-lobe serves as a binding site for the E2-ubiquitin complex and includes an exosite for non-covalent ubiquitin binding relevant to autoinhibition while the C-lobe contains an active site with a catalytic Cys residue to which the substrate ubiquitin molecule can covalently attach. The <scene name='84/848928/Hinge_zoomed/7'>hinge</scene> (magenta) connects the N and C lobes of the HECT domain and allows for flexible movement of the lobes as ubiquitin is transferred from the E2-ubiquitin complex docked on the N-lobe to the ubiquitin binding site in the C-lobe. A transthiolation reaction in this active site results in a thioester bond between the ubiquitin and a Cys residue. The HECT domain is in an inverse T shape when inactive (autoinhibited) and takes on an L shape when active. WW2 interaction with HECT is mediated by the six C terminal residues.
<html5media height="360" width="360">https://vimeo.com/528973813</html5media>
<html5media height="360" width="360">https://vimeo.com/528973813</html5media>
The video above shows the protein WWP2, with emphasis on the hinge loop shown in magenta.


The alpha-helical 2,3-linker is subject to tyrosine phosphorylation at either end of the linker at residues <scene name='84/848928/Tyr392tyr369/2'>Tyr369 and Tyr392</scene>. Chen et. al. have shown that the phosphorylation of Tyr369 allows for allosteric activation by ubiquitination at the exosite in the N-lobe, while phosphorylation of Tyr392 residue leads to a destabilization of the T conformation of the HECT domain.  
The alpha-helical 2,3-linker is subject to tyrosine phosphorylation at either end of the linker at residues <scene name='84/848928/Tyr392tyr369/2'>Tyr369 and Tyr392</scene>. Chen et. al. have shown that the phosphorylation of Tyr369 allows for allosteric activation by ubiquitination at the exosite in the N-lobe, while phosphorylation of Tyr392 residue leads to a destabilization of the T conformation of the HECT domain.  

Revision as of 18:42, 25 March 2021

WWP2 Ubiquitin Ligase Chimeric Structure (PDB entry 5TJ7). The 2,3-linker (red) connects the WW2 domain (yellow) to the WW3 domain. The hinge (magenta) connects the C-terminal lobe (green) and N-terminal lobe (silver) of the HECT domain.

Drag the structure with the mouse to rotate


References

Proteopedia Page Contributors and Editors (what is this?)

Tihitina Y Aytenfisu, Hannah Campbell, Michal Harel, Sandra B. Gabelli