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Structural insights into the functional versatility of WW domain-containing oxidoreductase tumor suppressor
1Department of Biochemistry & Molecular Biology, Leonard Miller School of Medicine, University of Miami, Miami, FL 33136, USA amjad@farooqlab.net.
Abstract:
Recent work on WW domain-containing oxidoreductase (WWOX) tumor suppressor is beginning to shed new light on both the molecular mechanism of action of its WW domains as well as the contiguous catalytic domain. Herein, the structural basis underlying the ability of WW1 domain to bind to various physiological ligands and how the orphan WW2 tandem partner synergizes its ligand binding in the context of WW1-WW2 tandem module of WWOX is discussed. Notably, the WW domains within the WW1-WW2 tandem module physically associate so as to adopt a fixed spatial orientation relative to each other. In this manner, the association of WW2 domain with WW1 hinders ligand binding to the latter. Consequently, ligand binding to WW1 domain not only results in the displacement of WW2 lid but also disrupts the fixed orientation of WW domains in the liganded conformation. Equally importantly, structure-guided functional approach suggests that the catalytic domain of WWOX likely serves as a retinal oxidoreductase that catalyzes the reversible oxidation and reduction of all-trans-retinal. Collectively, this review provides structural insights into the functional versatility of a key signaling protein with important implications on its biology.
Insights
The WW domain-containing oxidoreductase (WWOX) protein
Area of Science:
- Molecular biology
- Structural biology
- Biochemistry
Background:
- The WW domain-containing oxidoreductase (WWOX) is a tumor suppressor protein.
- Understanding the molecular mechanisms of WWOX's WW domains and catalytic domain is crucial.
Purpose of the Study:
- To elucidate the structural basis of WW1 domain ligand binding.
- To investigate the synergistic role of the WW2 domain in WWOX ligand binding.
- To explore the catalytic function of the WWOX protein.
Main Methods:
- Structural analysis of the WW1-WW2 tandem module.
- Structure-guided functional assays.
- Biochemical characterization of retinal oxidation/reduction.
Main Results:
- WW domains in the WW1-WW2 tandem module adopt a fixed orientation, with WW2 hindering WW1 ligand binding.
- Ligand binding to WW1 displaces WW2 and alters the domain orientation.
- The catalytic domain of WWOX functions as a retinal oxidoreductase.
Conclusions:
- WWOX exhibits functional versatility through its WW domains and catalytic activity.
- Structural insights reveal the intricate regulation of WWOX ligand binding and enzymatic function.
- This study has significant implications for understanding WWOX's role in cell signaling and disease.
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