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Published on: July 3, 2018
Structural Characterization of TRAF6 N-Terminal for Therapeutic Uses and Computational Studies on New Derivatives
Omur Guven1, Belgin Sever2,3, Faika Başoğlu-Ünal4
1Department of Molecular Biology and Genetics, Koç University, Istanbul 34450, Turkey.
Abstract:
Tumor necrosis factor receptor-associated factors (TRAFs) are a protein family with a wide variety of roles and binding partners. Among them, TRAF6, a ubiquitin ligase, possesses unique receptor binding specificity and shows diverse functions in immune system regulation, cellular signaling, central nervous system, and tumor formation. TRAF6 consists of an N-terminal Really Interesting New Gene (RING) domain, multiple zinc fingers, and a C-terminal TRAF domain. TRAF6 is an important therapeutic target for various disorders and structural studies of this protein are crucial for the development of next-generation therapeutics. Here, we presented a TRAF6 N-terminal structure determined at the Turkish light source "Turkish DeLight" to be 3.2 Å resolution at cryogenic temperature (PDB ID: 8HZ2). This structure offers insight into the domain organization and zinc-binding, which are critical for protein function. Since the RING domain and the zinc fingers are key targets for TRAF6 therapeutics, structural insights are crucial for future research. Separately, we rationally designed numerous new compounds and performed molecular docking studies using this template (PDB ID:8HZ2). According to the results, 10 new compounds formed key interactions with essential residues and zinc ion in the N-terminal region of TRAF6. Molecular dynamic (MD) simulations were performed for 300 ns to evaluate the stability of three docked complexes (compounds 256, 322, and 489). Compounds 256 and 489 was found to possess favorable bindings with TRAF6. These new compounds also showed moderate to good pharmacokinetic profiles, making them potential future drug candidates as TRAF6 inhibitors.
Insights
Researchers determined the structure of the TRAF6 N-terminal domain, revealing critical insights into its zinc-binding and domain organization. This structural data enabled the design of novel TRAF6 inhibitors with promising therapeutic potential.
Area of Science:
- Structural Biology
- Medicinal Chemistry
- Immunology
Background:
- Tumor necrosis factor receptor-associated factors (TRAFs) are crucial signaling proteins.
- TRAF6, a ubiquitin ligase, plays diverse roles in immunity, signaling, and cancer.
- Structural studies of TRAF6 are vital for developing targeted therapeutics.
Purpose of the Study:
- To determine the high-resolution structure of the TRAF6 N-terminal domain.
- To investigate the structural basis of TRAF6's zinc-binding and domain organization.
- To design and evaluate novel TRAF6 inhibitors based on structural insights.
Main Methods:
- X-ray crystallography at the Turkish light source 'Turkish DeLight' (PDB ID: 8HZ2).
- Rational drug design and molecular docking studies.
- Molecular dynamics (MD) simulations for stability assessment.
Main Results:
- A 3.2 Å resolution structure of the TRAF6 N-terminal domain was obtained.
- Ten novel compounds showed significant interactions with TRAF6's N-terminal region and zinc ion.
- Compounds 256 and 489 exhibited stable binding and favorable pharmacokinetic profiles.
Conclusions:
- The determined TRAF6 structure provides critical insights for therapeutic targeting.
- Novel compounds targeting TRAF6 have been identified as potential drug candidates.
- These findings pave the way for developing next-generation TRAF6 inhibitors.
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